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5th Biennial International Workshop
Fullerenes and Atomic Clusters IWFAC'2001

July 2-6, 2001 St. Petersburg, Russia
Abstracts
| CONTENTS | page |
Invited Lectures |
F. Banhart
The Formation and Transformation of Carbon Nanoparticles under Electron Irradiation | 6 |
R. Tenne
Inorganic Nanotubes and Inorganic Fullerene-like Materials of Metal Dichalcogenides | 7 |
T. Kato
Electron Spin Resonance Measurements of Endo-Metallofullerenes | 8 |
A.G. Lyapin and V.V. Brazhkin
Correlation of Physical Properties in Carbon Phases Prepared from Fullerite C60 under Pressure | 9 |
U.M. Dzhemilev, A.G. Ibragimov, and R.I. Khusnutdinov
Metal Complex Catalysis in C60 Chemistry | 10 |
R.N. Lyubovskaya
Molecular Complexes of Fullerenes. Synthesis, Structure, Possible Application | 11 |
L.N. Sidorov
Buckyball, higher Fullerenes and their endohedral and fluorine Derivatives | 12 |
S. Patil, Y. Chi, M. Halder, T. Canteenwala, A. Prashant, and L.Y. Chiang
Electronic and Biological Behavior of Fullerene-derived Starburst Conjugated Macromolecules | 13 |
Panel Discussion
"Applications of Carbon Clusters" |
V.Z. Mordkovich
The Way to Mass Production of Multishell Fullerenes | 16 |
Y. Lee
Applications of Carbon Nanotubes to Hydrogen Storage | 17 |
E.A. Katz
Potential of Fullerene-based Materials for Utilisation of Solar Energy | 18 |
INTAS Meeting |
Yu.E. Lozovik, .L. Dobryakov, S.A. Kovalenko, S.P. Merkulova, and M. Willander
Mobility Edge for Carriers in Cluster and Porous Materials: New Method of Determination of Localization of Carriers by Femtosecond Spectroscopy | 20 |
O.V. Kibis
Anomalous Electronic Properties of Chiral Carbon Nanotubes in a Magnetic Field | 21 |
D. Hathiramani, P. Scheier, and E. Salzborn
Recent Results on Multiple-ionization and Fragmentation of Negatively-charged Fullerene Ions by Electron Impact | 22 |
Yu.A. Shevelev, G.A. Domrachev, V.K. Cherkasov, and G.V. Markin
Interaction of Fullerenes with Metallic Lithium in the Condensed State | 23 |
V.L. Kuznetsov, A.N. Usoltseva, A.L. Chuvilin, E.D. Obraztsova, and J.-M. Bonard
Thermodynamic Analysis of Carbon Nucleation on the Metal Surface | 24 |
Oral Contributions |
K.P. Meletov, S. Assimopoulos, I. Tsilika, G.A. Kourouklis, J. Arvanitidis, S. Ves, T. Wagberg, and B. Sundquist
Pressure-induced Transformation in Two-dimensional Polymeric Phases of C60 | 26 |
C. Grimaldi, E. Cappelluti, L. Pietronero, and S. Strässler
Nonadiabatic Superconductivity in Fullerene-based Materials | 27 |
N.R. Serebryanaya, V.D. Blank, L.A. Chernozatonskii, and V.A. Ivdenko
Crystal Structure of Superhard Pressure Induced C60 Phase at 22.4 GPa | 28 |
B. Narymbetov, A. Omerzu, V.V. Kabanov, M. Tokumoto, H. Kobayashi, and D. Mihailovic
C60 Molecular Configurations Leading to Ferromagnetic Exchange Interactions in TDAE-C60 | 29 |
A.V. Talyzin, L.S. Dubrovinsky, and U. Jansson
In situ Study of C60 Polymerisation under High pressure High Temperature Conditions | 30 |
A.N. Starukhin, A.V. Chugreev, B.S. Razbirin, V.P. Smirnov, V.A. Marushak, B. Honnerlage, and R. Levy
Magnetooptical Study of the Triplet Emission of Matrix-isolated Fullerene C70 Molecules | 31 |
Yu.A. Ossipyan, R.B. Morgunov, Yu.I. Golovin, D.V. Lopatin, S.Z. Shmurak, R.K. Nikolaev, and A.A. Umrihin
Resonant Influence of Static and Microwave Magnetic Fields on Photoconductivity in C60 Single Crystals | 32 |
V.M. Senyavin, O.P. Pronina, V.A. Davydov, and V.N. Agafonov
Infrared Spectroscopy of C60 Polymers: from Characterization to Applications | 33 |
I.M. Belousova, V.P. Belousov, O.B. Danilov, and A.A. Mak
Fullerenes and Laser Optics | 34 |
S. Friedrichs, R.R. Meyer, J. Sloan, A.I. Kirkland, J.L. Hutchison, and M.L.H. Green
Simultaneous Determination of Inclusion Crystallography and Nanotube Conformation for a Sb2O3/SWNT Composite | 35 |
M.R.C. Hunt, M. Montalti, Y.Chao, V. Dhanak, and L. Siller
Alkali-metal Doping of Single Wall and Multi-wall Carbon Nanotubes | 36 |
R.B. Weisman, D. Heymann, and S.M. Bachilo
Novel Compounds of Oxygen with C60 and C70 | 37 |
S.V. Demishev, A.A. Pronin, N.E. Sluchanko, N.A. Samarin, V.V. Glushkov, A.G. Lyapin, M.V. Kondrin, V.V. Brazhkin, T.D. Varfolomeeva, and S.V. Popova
New Nanocluster Carbyne-based Material Synthesized under High Pressure | 38 |
K. Suenaga and S. Iijima
Valence state Analyses of the Encapsulated Metal Atoms in Endohedral Metallofullerenes by Electron energy-loss Spectroscopy | 39 |
Yu.L. Slovokhotov, Y. Kubozono, and S. Kashino
Crystallography of Endohedral Metallofullerenes | 40 |
K. Tang, X. Jin, and Y. Tang
Syntheses, Structures and Properties of Novel Molybdenum and Tungsten Complexes of Fullerenes | 41 |
I.A. Nuretdinov, V.P. Gubskaya, L.Sh. Berezhnaya, G.M. Fazleeva, N.I. Schischikina, V.V. Zverev, and I.P. Karaseva
Organophosphorus Derivatives of Fullerenes C60 and C70. Synthesis, Structure and Properties | 42 |
S. Hayashi, S. Tomita, Y. Tsukuda, and M. Fujii
Ultraviolet-Visible Absorption Spectroscopy of Carbon Onions | 43 |
A.I. Shames, A.M. Panich, W. Kempinski, A.E. Alexenskii, M.V. Baidakova, A.Ya. Vul', A.T. Dideikin, and A.A. Sitnikova
Structure of Nanodiamonds. TEM, X-ray, EPR, NMR Studies | 44 |
G. Sinyashin, I.P. Romanova, and G.G. Yusupjva
The Cyloaddition Reactions of Isocyanuratealkylazides to [60]Fullerene: Synthesis, Structure, Thermic and Electrochemical Behaviour of Monoadducts | 45 |
G. Chechin, O. Lavrova, V. Sakhnenko, H.T. Stokes, and D.M. Hatch
New Approach to Nonlinear Dynamics of Fullerenes and Fullerites | 46 |
J.P. Maehlen, B.P. Tarasov, B.C. Hauback, V.A. Yartys, and J. Tafto
Structural Studies of Carbon Nanomaterials | 47 |
V.L. Aksenov, M.V. Avdeev, A.V. Belushkin, D. Mihailovic, A. Mrzel, I.N. Serdyuk, A.A. Timchenko, and V.D. Vasiliev
Study of Fullerene Aggregates in Pyridine/Water Solutions | 48 |
H. Naramoto, X. Zhu, J. Vacik, Y. Xu, K. Narumi, S. Yamamoto, V.I. Lavrentiev, and K. Miyashita
Allotropic Conversion of Carbon-related Films by Using Energy Beams | 49 |
E.A. Katz, D. Faiman, S. M. Tuladhar, S. Shtutina, N. Froumin, and M. Polak
Electro-diffusion Phenomena in C60 Thin Films | 50 |
Yu.M. Solonin, O.Z. Galiy, O.Yu. Khyzhun, and E.A. Grayvoronskaja
Structure and Electrochemical Properties of C60 Thin Films | 51 |
V.V. Afrosimov, R.N. Il'in, V.I. Sakharov, and I.T. Serenkov
Fast Ion Channeling in Fullerene Crystals | 52 |
N.R. Gall, E.V. Rut'kov, and A.Ya. Tontegode
C60 Molecular Adsorption and Initial Film Growth on Metals and Silicon | 53 |
A.I. Romanenko, O.B. Anikeeva, A.V. Okotrub, V.L. Kuznetsov, Yu.V. Butenko, A.L. Chuvilin, C. Dong, and Y. Ni
Temperature Dependence of Electroresistivity, Negative and Positive Magnetoresistivity of Carbon Nanoparticles | 54 |
E.A. Smorgonskaya, R.N. Kyutt, A.M. Danishevskii, S.K. Gordeev, and A.V. Grechinskaya
Small Angle X-Ray Scattering in Sulfur-Impregnated Bulk Nanocluster Carbon Produced from Silicon Carbid | 55 |
A.G. Kudashov, A.V. Okotrub, A.V. Gusel'nikov, N.F. Yudanov, L.G. Bulusheva, Yu.V. Shubin, A.L. Chuvilin, A.M. Pazhetnov, and A.I. Boronin
Synthesis of CVD Nanotubes and their Electronic Properties | 56 |
A.L. Musatov, N.A. Kiselev, D.N. Zakharov, E.F. Kukovitskii, K.R. Izrael'yants, and E.G. Chirkova
Field Electron Emission from Nanotube Carbon Layers Grown on Ni foil | 57 |
V.A. Ryzhkov
On Preferable Producing Higher Fullerenes by a Contact Auto-Regulated ARC Discharge in Liquid Hydrocarbons | 58 |
G.N. Churilov, P.V. Novikov, N.G. Vnykova, and N.V. Bulina
Electron Density, as the Parameter, which Influence on Transition of Carbon Plasma to Fullerene Condition of Carbon | 59 |
Gy. Törok, V.T. Lebedev, L. Cser, D.N. Orlova, V.P. Budtov, A.I. Sibilev, M.A. Sibileva, V.V. Klyubin, E.A. Kelberg, V.N. Zgonnik, E.Yu. Melenevskaya, and L.V. Vinogradova
Neutron Study of Poly(N-vinylpyrrolidone)-Complexes with C60 as Related to their Biological Activity: Interaction with DNA, Thermal Stability and Structural Peculiarities in Aqueous Solutions | 60 |
V. Dudkin, V. Pukha, A. Vus, E. Zubarev, and O. Vovk
The Condensed Films Obtained from a Flux of C60 Ions with Energy up to 1 keV | 61 |
G. Van Lier, C. Van Alsenoy, V. Van Doren, and P. Geerlings
Ab Initio Study of the Physical Properties of Single-Walled Carbon Nanotubes and Graphene | 62 |
G.V. Tikhomirova and A.N. Babushkin
Comparative Studies of Conductivity of Graphite and Fullerene at High Pressure | 63 |
T. Shiroka, M. Riccò, F. Barbieri, E. Zannoni, and M. Tomaselli
Clustering and Polymerisation of Li15C60 | 64 |
V.I. Tsebro and O.E. Omel'yanovskii
Persistent Currents and Magnetic Flux Trapping in a Multiply Connected Carbon Nanotube Structure | 65 |
POSTER SESSION1. Structure and electronic properties of nanotubes and fullerenes |
P1 M.P. Kulish, M.M. Belyi, V.O. Gubanov, O.P. Dmytrenko, M.V. Makarets, Yu.I. Prylutskyy, P. Eklund, and P. Scharff
Radiation Effect on the Single-Walled Carbon Nanotubes | 68 |
P2 F.N. Tomilin, P.V. Avramov, A.A. Kuzubov, P.O. Krasnov, S.G. Ovchinnikov, and G.L. Pashkov
Relationship between Topology and Nature of Chemical Bond in Carbon Nanotubes | 69 |
P3 V.A. Geyler, O.G. Kostrov, and V.A. Margulis
Density of States for Carbon Nanotubes in the Presence of a Uniform Magnetic Field | 70 |
P4 A.V. Okotrub, N.F. Yudanov, L.G. Bulusheva, A.I. Romanenko, and A.L. Chuvilin
Synthesis, Structure, and Properties of Modified Carbon Nanotubes | 71 |
P5 N.R. Serebryanaya, L.A. Chernozatonskii, and B.N. Mavrin
Polymerized Structures of C60 and C70 | 72 |
P6 V.A. Davydov, L.S. Kashevarova, A.V. Rakhmanina, V.M. Senyavin, N.N. Oleynikov, and V. Agafonov
Determination of the Rate Constants and the Activation Energy for the Pressure-Induced (2+2) cycloaddition of Fullerene C60 | 73 |
P7 V.V. Belavin, L.G. Bulusheva, A.V. Okotrub, and V.A. Davydov
Orientational Effect in Hexagonal C60 Polymer | 74 |
P8 L.G. Bulusheva, A.V. Okotrub, V.L. Kuznetsov, A.L. Chuvilin, and Yu.V. Butenko
Topology and Electronic Structure of Caged Carbon | 75 |
P9 D.V. Kirin and P.N. D'yachkov
Linear Augmented Cylindrical Wave Method for Calculation of Electronic Structure of Hollow and Intercalated Nanotubular Systems | 76 |
P10 O.M. Gur'janova, E.F. Kukovitsky, S.G. L'vov, N.A. Sainov, and V.A. Shustov
Diffraction Study of Nickel-Carbon Phases in Catalytic Growth of Carbon Nanotubes | 77 |
P11 A.V. Krasheninnikov, K. Nordlund, M. Sirviö, and J. Keinonen
Ion Irradiation-induced Atomic-scale Defects on Walls of Carbon Nanotubes: an Empirical Potential and Tight-binding Study | 78 |
P12 Yu.V. Butenko, V.L. Kuznetsov, P.A. Simonov, and A.L. Chuvivlin
Structural, Chemical and Optical Properties of the Onion-Like Carbon (OLC) Prepared by Vacuum Annealing of Nanodiamonds | 79 |
P13 V.T. Lebedev, Gy. Törok, L. Cser, V.P. Budtov, and A.I. Sibilev
Molecular Rotations Slowing in Solid C60 under Applied Magnetic Field | 80 |
P14 V.V. Makarov and A.B. Sherman
Low-Frequency Negative Dielectric Permittivity in C70 | 81 |
P15 V.V. Afrosimov, I.B. Zakharova, R.N. Il'in, T.L. Makarova, V.I. Sakharov, and I.T. Serenkov
The Investigation of Intercalated Fullerene Films by Means of Middle Energy Ion Scattering Method | 82 |
P16 V.V. Afrosimov, A.A. Basalaev, K.V. Kashnikov, and M.N. Panov
Fullerene Fragmentation in Collisions with Ions at Different Impact Parameters | 83 |
P17 V.I. Siklitsky, L.V. Lutsev, S.V. Yakovlev, T.K. Zvonareva, and V.M. Lebedev
Influence of Localized States in Carbon on Electron Transport and Microwave Absorption in the Amorphous Carbon Structure with Co Nanoclusters | 84 |
P18 V.M. Mikoushkin, V.V. Shnitov , V.V. Bryzgalov, and Yu.S. Gordeev
The Influence of the Collision Energy on the Rate of the Electron Induced Fullerite C60 Polymeryzation and Amorphyzation | 85 |
P19 V.M. Mikoushkin, and Yu.S. Gordeev
The Role of Electron Irradiation in Thermal Creation of SiC on the Si/C60 Interfaces | 86 |
P20 V.V. Shnitov, V.V. Bryzgalov, V.M. Mikoushkin, and Yu.S. Gordeev
Absorption, Implantation and Embedment of Oxygen in Fullerite C60 at Vacuum Conditions | 87 |
P21 V.V. Shnitov, V.V. Bryzgalov, V.M. Mikoushkin, and Yu.S. Gordeev
EELS- Criterion of the Electron Induced Fullerite Modification Rate and its Use for the Analysis of Modification Mechanisms | 88 |
P22 G.D. Mansfeld, S.G. Alekseev, Yu.V. Gulyaev, Z.Ya. Kosakovskaya, and V.V. Saraykin
Acoustic and Acoustoelectron Properties of Carbon Nanotube Films | 89 |
P23 A. Hassanien and M. Tokumoto
Atomic Resolution Scanning Tunneleing Microscopy and Spectroscopy of Carbon Nanotubes | 90 |
P24 A.N. Izotov, V.V. Kveder, R.K. Nikolaev V.I. Orlov, Yu.A. Ossipyan, N.S. Sidorov, and E.A. Steinman
Plastic Deformation of Single Crystals C60 and C70 | 91 |
P25 V.V. Kovalevski and I.A. Moshnikov
Electron Energy-Loss Spectra of Carbon from Shungite Rocks | 92 |
P26 V.L. Aksenov, Yu.A. Ossipyan, and V.S. Shakhmatov
Symmetry Properties of Carbon Nanotubes | 93 |
P27 E.G. Gal'pern, A.R. Sabirov, L.A. Chernozatonskii, and I.V. Stankevich
Geometry and Electronic Structure of Covalent Bonded (6,0) Nanotube Crystal | 94 |
P28 V.E. Muradyan, N.Yu. Shul'ga, I.A. Domashnev, B.P. Tarasov, A.M. Kolesnikova, E.P. Krinichnaya, P.V. Fursikov, and Yu.M. Shul'ga
Interlayer Distances in Multiwall Carbon Nanotubes | 95 |
2. New approaches for synthesis of fullerenes and nanotubes |
P29 D. Stoenescu, V. Stanciu, D. Mirica, M. Curuia, C. Sandru, and C. Mirestean
Experimental Study Concerning Fullerenes C60 Synthesis by ARC Discharge of Graphite | 96 |
P30 C.-Y. Lee, H.-T. Chiu, C.-W. Peng, M.-Y. Yen, Y.-H. Chang, and C.-S. Liu
Construction of Carbon Related Materials at Low Temperature from Molecular Building Block | 97 |
P31 Z. Markovic, B. Todoorovic-Markovic, and T. Nenadovic
Synthesis of Fullerenes by Hollow Cathode ARC | 98 |
P32 M.R.C. Hunt, M. Montalti, Y.Chao, V. Dhanak, and L. Siller
Single Wall Carbon Nanotubes: Potassium Intercalation, De-intercalation and Destruction | 99 |
P33 A. Mrzel, M.Remskar, and D. Mihailovic
Preparation of Inorganic Nanotubes by the Chemical Transport Reaction | 100 |
P34 J. Kalnacs, S. Aleksandrovs, D. Grigale, and I. Pavasars
Synthesis of Fullerenes in the Electric ARC plasma by using the magnetic field | 101 |
P35 N.I. Alekseev and G.A. Dyuzhev
Fullerene Formation Mechanism in ARC | 102 |
P36 M.A. Lopatin, T.I. Lopatina, V.L. Karnatsevich, E.V. Shupak, and M. Markovich
The Modification of Coals as the Stationary Phase for Production of Pure C60 and C70 by Preparative Chromatography Method | 103 |
P37 E.G. Rakov, E.V. Fomina, and I.A. Nenaglyadkin
Thermodynamic Analysis of Criterions of Carbon Nanotubes Synthesis by Means of Catalytic Hydrocarbons Pyrolysis | 104 |
P38 E.V. Skokan, I.V. Arkhangelskii, N.A. Zhukova, Yu.A. Velikodnyi, N.B. Tamm, and N.V. Chelovskaya
C60 (H.C.P.): Synthesis by Cryoextraction from Benzene Solutions | 105 |
P39 P.A. Troshin, A. Streletskii, N.I. Denisenko, O.V. Boltalina, V.V. Vanovskii, N.V. Polyakova, Z.E. Klinkina, and B.I. Rashkin
Large-scale Selective Syntheses of C60F44 | 106 |
P40 E.F. Kukovitsky, S.G. L'vov, N.A. Sainov, V.A. Shustov, and L.A. Chernozatonskii
Correlation between Metal Catalyst Particle Size and Carbon Nanotube Growth | 107 |
P41 A.S. Lobach, N.G. Spitsina, E.D. Obraztsova, and S.V. Terekhov
Comparative Study of Purification Methods for Single Walled Carbon Nanotubes | 108 |
P42 S.V. Antonenko, S.N. Maltsev, and A.A. Timofeev
Investigation of Carbon Nanotubes Obtained by DC Magnetron Sputtering | 109 |
P43 V.L. Kuznetsov, Yu.V. Butenko, A.L. Chuvilin, E.D. Obraztsova, A.V. Okotrub, L.G. Bulusheva, and A.I. Romanenko
Synthesis and Properties of Onion-Like Carbon Prepared by the Annealing of Nanodiamond | 110 |
P44 A.P. Moravsky, A.G. Ryabenko, P.V. Fursikov, and A.A. Ryabenko
PC Analysis of Fullerenes C76 C78 C84 Content Variability in Carbon ARC Soot Extracts | 111 |
P45 D.V. Afanas'ev, G.A. Baranov, A.A. Beljaev, G.A. Dyuzhev, and A.K. Zinchenko
Production of Fullerene at Graphite Vaporing by Stationary CO2 Laser | 112 |
P46 D.V. Afanasiev, O.P. Gorelik, G.A. Duyzhev, D.V. Novikov, V.M. Oichenko, and A.A. Sitnikova
The Structure of Nanoclusters of Fullerene Soot at Different Kinetic Stages of Formation | 113 |
P47 E.G. Volkova, A.Yu. Volkov, V.I. Kodolov, A.P. Kuznetsov, J.A. Nikolaeva, and E.S. Shayahmetova
Low-energy Method of Synthesis and Structure of Carbon Tubes | 114 |
P48 L.G. Makarova, I.N. Shabanova, A.P. Kuznetsov, O.A. Nikolaeva, and V.I. Kodolov
The Influence Study of the Initial Substances Concentration on Fullerenes Forming by XPS Method | 115 |
P49 S.Yu. Tsarjova, E.V. Zharikov, E.M. Koltsova, and I.S. Nenaglyadkin
Analysis of Catalytic Influence on the Process of Carbon Nanotubes Formation | 116 |
P50 O.A. Nikolaeva, V.I. Kodolov, L.G. Makarova, A.Yu. Volkov, and E.G. Volkova
Synthesis and Investigation of Carbon-Metal Containing Tubulenes Obtained from Functional Polymers | 117 |
P51 E.Sh. Shayakhmetova, A.A. Didik, and V.I. Kodolov
Obtaining and Investigation of Carbon-Metal Containing Tubules on Metal Bases | 118 |
P52 A. Zak, Y. Feldman, V. Alperovich, R. Rosentsveig, and R. Tenne
Growth Mechanism of MoS2 Fullerene-Like Nanoparticles by the Gas Phase Synthesis | 119 |
P53 Y. Feldman , R. Rosentsveig, A. Zak, R. Popovitz-Biro, and R. Tenne
New Reactor for the Production of Tungsten Disulfide Fullerene-Like Nanoparticles and Nanotubes | 120 |
3. Superconductivity in fullerenes |
P54 P. Konsin and B. Sorkin
A Two-band Electron-phonon Model for Superconductivity in Graphite Intercalation Compounds | 121 |
4. Magnetic properties of fullerenes and nanotubes |
P55 L. Forró
Alkali-specific effects on the Spin Susceptibility of Fullerides | 122 |
P56 V.E. Kaminskii
Magnetotransport in Carbon Nanotubes and Negative Magnetoresistance. Density Matrix Approach | 123 |
P57 N.G. Galkin, B.A. Margulis, and A.V. Shorokhov
Electrodynamic Response of Quantum Nanotubes in a Parallel Magnetic Field | 124 |
P58 S.V. Demishev, N.E. SluchankoL. Weckhuysen, V.V. Moshchalkov, H. Ohta, S. Okubo, Y. Oshima, and N.G. Spitsina
Magnetism of C60-based Molecular Complexes: High-field Magnetisation and Magneto-optical Study | 125 |
P59 A.S. Kotosonov, D.V. Shilo, and A.P. Moravsky
Magnetic Properties of Carbon Nanotubes Produced by ARC-Discharge Method at Different Conditions | 126 |
P60 T.L. Makarova, B. Sundqvist, V.A.. Davydov, A.V. Rakhmanina, and L.S. Kashevarova
Magnetic Susceptibility of Polymerized Fullerenes | 127 |
P61 Z. Kosakovskaya, V. Vdovenkov, and A. Kosakovskaya
Magnetoresistance of Well-oriented Carbon Nanotube Films | 128 |
5. Endohedral metallofullerenes |
P62 V.K. Koltover, V.P. Bubnov, E.E. Laukhina, Ya.I. Estrin, and E.B. Yagubskii
Stability and Mobility of Endohedral Metallofullerene La@C82 in polycarbonate polymer films | 129 |
P63 I.N. Ioffe, A.S. Ievlev, O.V. Boltalina, and L.N. Sidorov
Electron Affinity of Some Endohedral Metallofullerenes | 130 |
P64 M.A. Khodorkovskii, T.O. Artamonova, A.L. Shahmin, S.V. Murashov, Yu.S. Grushko, E.G. Alexeev, and V.S. Kozlov
Fragmentation of the Dy@C82 molecule | 131 |
P65 V.P. Bubnov, I.E. Kareev, E.E. Laukhina, V.K. Koltover, and E.B. Yagubskii
Transport Properties of Endometallofullerenes M@C2n (M = La,Y) | 132 |
P66 V.I. Kovalenko, A.R. Khamatgalimov, and M.V. Semyashova
Electron-deficient Local Substructures and Stability of some Endohedral Metallofullerenes | 133 |
P67 N.V. Bulina, G.N. Churilov, R.B. Weisman, G.E. Selutin, N.I. Pavlenko, and N.G. Vnukova
Synthesis of the Endohedral Fullerene with Iridium | 134 |
6. Phase transitions in fullerenes |
P68 T.B. Tang and M. Gu
Glass and Phase Transitions in Solid C60 Charged with Ar, Ne and He | 135 |
P69 M. Gu, H. Kong, S. K. Keung, and T.B. Tang
Thermoanalytical and Dielectric Studies on the Order-disorder and the Glass Transitions of C60/C70 Mixed Crystals | 136 |
P70 V.V. Milyavskiy, A.Z. Zhuk, V.N. Bezmelnitsyn, T.I. Borodina, V.I. Kulakov, and R.K. Nikolaev
Shock-Induced Transformations of C60 Fullerite | 137 |
P71 S.K. Simakov, A.A. Graphchikov, A.K. Sirotkin, A. Drozdova, E. Lapshin, and E.A. Grebenshchikova
Fulleren- and Diamond-Like Phases Formation at Low Pressures and Temperatures | 138 |
P72 B.V. Lebedev and A.V. Markin
Thermodynamics Properties Polyfullerites C60 | 139 |
P73 V.M. Egorov, B.I. Smirnov, V.V. Shpeizman, and R.K. Nikolaev
Kinetic Characteristics of Quenching Effect in C60 Single Crystals | 140 |
P74 S. Assimopoulos, I. Tsilika, G. A. Kourouklis, I.O. Bashkin, and K.P. Meletov
Phase Transitions in Hydrofullerene C60H36 Studied by Photoluminescence and Raman Spectroscopy at Pressure up to 12 GPa | 141 |
P75 N.P. Kobelev, R.K. Nikolaev, N.S. Sidorov, and Ya.M. Soifer
Temperature Dependeces of Elastic Moduli of Solid C60 | 142 |
P76 M.V. Kondrin, A.G. Lyapin, S.V. Popova, and V.V. Brazhkin
The Influence of Pressure- and Temperature-Induced Dimerization on the Orientational Phase Transition in Fullerite C60 | 143 |
P77 Yu.A. Ossipyan, Yu.I. Golovin, R.B. Morgunov, I.A. Pushnin, S.Z. Shmurak, and R.K. Nikolaev
Influence of Phase Transitions on the Sensitivity of Fullerite and Polymers Plasticity to Magnetic Field | 144 |
7. Electron field-emission phenomena in fullerenes |
P78 A.V. Gusel'nikov, A.V. Okotrub, Hojin Ryu, P.N. Gevko, D.D. Gaun, and A.G. Kudashov
Electron Field Emission Properties of Carbon Nanomaterials | 145 |
P79 V.M. Lobanov, Yu.M. Yumaguzin, and R.Z. Bakhtizin
Emission Properties of Carbon Nanocrystallite | 146 |
P80 A.N. Ponomarev, V.T. Barchenko, A.N. Brozdnichenko, V.P. Pronin, V.A. Nikitin, A.M. Germansky, and I.I. Khinitch
Compaction Fulleroid Materials for Cold Cathode for Ligth Devices | 147 |
8. Fullenere composites |
P81 A.V. Prikhodko and O.I. Kon'kov
Fullerenes Cuprates - New Possibilities in Microwave Technics | 148 |
P82 G.A. Domrachev, G.V. Markin, E.G. Domracheva, V.L. Vaks, A.I. Lazarev, B.S. Kaverin, V.L. Karnatsevich, A.I. Kirillov, A.M. Ob'yedkov, S.N. Titova, L.G. Domracheva, and N.V. Karyakin
Structure Hierarchy for Fe-C System at the Laboratory and in the Space | 149 |
9. Organic synthesis of fullerene derivatives |
P83 Wen-Jwu Wang, Y.L. Lay, C.S. Chang, and H.S. Chiu
Synthesis, Spectroscopic and Magnetic Properties of the Charge-Transfer Complex C60:Bifc | 150 |
P84 Wen-Jwu Wang, C.S. Chang, H.S. Chiu, L.Y. Chiang, and J. Bhonsle
Electrochemistry of C60 Derivatives | 151 |
P85 E. Klimova, T. Klimova, M.G. Martinez, and D.I. Mendez
Ferrocene Derivatives in Diels-Alder [4+2] Cycloaddition Reactions to Fullerenes C60 and C70 | 152 |
P86 J. Tian, D. Scheesley, and A. Smith
Solubility and Calorimetric Study of C60 and a C60 Piperazine Derivative in Aromatic Solvents and Water | 153 |
P87 C.N. Murthy and K.E. Geckeler
Synthesis and Characterization of the β-Cyclodextrin-[60]Fullerene Inclusion Complex | 154 |
P88 S. Iwamatsu, T. Uozaki, and S. Murata
Addition of Aromatic Diamines with a Diketone Derivative of Bis(fulleroid) | 155 |
P89 V.N. Ivanova, V.A. Nadolinny, I.A. Grigor'ev, and E. Rejerse
Synthesis and ESR Investigation of Fullerene C60 Derivatives with 2,2,5,5-tetramethyl-3-imidazoline-3-oxide-1-oxyl-4-(azidophenyl) | 156 |
P90 L.S. Litvinova, V.G. Ivanov, A.V. Gribanov, and V.N. Zgonnik
The Preparation and Investigation of Water-Soluble Fullerene Complexes with Carbohydrates | 157 |
P91 Yu.I. Lyakhovetsky, A.P. Pleshkova, E.A. Shilova, S.O. Yakushin, B.L. Tumanskii, and Yu.S. Nekrasov
Reactive Mass Spectrometry of Fullerenes. Interaction of C60 and C70 with Aldehydes | 158 |
P92 R.I. Khusnutdinov, N.A. Schadneva, A.R. Baiguzina, Yu.Yu. Lavrentieva, U.M. Dzhemilev, O.M. Nefedov, and N.D. Zelinsky
Fullerene [60] Oxidation by Alkylhypochlorites under the Effect of Manganese and Vanadium Complexes | 159 |
P93 R.I. Khusnutdinov, N.A. Schadneva, A.R. Baiguzina, Yu.Yu. Lavrentieva, U.M. Dzhemilev, O.M. Nefedov, and N.D. Zelinsky
Fullerene [60] Chlorination with the use of CCl4 Effected by Manganese and Vanadium Complexes | 160 |
P94 D.V. Konarev, A.L. Litvinov, R.N. Lyubovskaya I.S. Neretin, and Yu.L. Slovokhotov
New Molecular Complex of C60 with bis(4,5-dihydronaphtho[1,2-d])tetrathiafulvalene: Synthesis and Crystal Structure | 161 |
P95 A.L. Litvinov, D.V. Konarev, A.Yu. Kovalevsky, I.S. Neretin, and R.N. Lyubovskaya
New Molecular Complexes of Fullerene C60 with Aromatic Hydrocarbons: 9,10-Diphenylanthracene and Triphenylbenzene | 162 |
P96 V.V. Yanilkin, V.I. Morozov, I.A. Nuretdinov, V.P. Gubskaya, N.V. Nastapova, V.V. Zverev, and A.V. Ilyasov
Molecular Electrochemistry Monosubstituted Methanofullerenes and Fulleropyrrolidines | 163 |
P97 E.I. Yudanova, D.V. Konarev, A.L. Litvinov, M.G. Kaplunov, and R.N. Lyubovskaya
Selective Reduction of Fullerenes C60 and C70 in Dry Aprotic Solvents | 164 |
P98 V.Ya. Davydov and V.A. Voblikova
Preparation of Water - soluble Fullerene C60 Drivatives by Ozonolysis | 165 |
P99 I.S. Neretin, Yu.L. Slovokhotov, D.V. Konarev, and R.N. Lyubovskaya
Crystal Structures of New Fullerene/porphyrin Molecular Complexes | 166 |
P100 A.V. Usatov, E.V. Martynova, and Yu.N. Novikov
1-Diphenylphosphino-2-iso-propenyl-o-carborane as the First Bidentate Ligand with Two Different Coordinating Centers for Chelating (η2-C60)Pt-fragment | 167 |
P101 N.G. Spitsina, V.V. Gritsenko, O.A. Dyachenko, and E.B. Yagubskii
New Molecular Complex of C60 with the bis(methylenedithiotetrathiafulvalene) (BMDT-TTF): Synthesis, Crystal Structure, Properties | 168 |
P102 A.V. Usatov, V.N. Lebedev, E.V. Martynova, and Yu.N. Novikov
Interaction of Fullerene C60 with Heterometallic Triangular Cluster [(PPh3)2PtFe2(CO)8] and Octacarbonyl Triruthenium Monocarbollid Cluster [Ru3(CO)7(t-BuNC)( η5-7-Me3N-7-CB10H10)] | 169 |
P103 A.V. Usatov, E.V. Martynova, Yu.N. Novikov, I.S. Neretin, and Yu.L. Slovokhotov
Novel Unusual Dimeric Platinum-fullerene Complex with Bridging dppm Ligands: Synthesis and Structure | 170 |
P104 E.B. Stukalin, A.G. Bogachov, N.V. Avramenko, I.S. Neretin, and M.V. Korobov
Solvates of C60, C70 and their Derivatives with Aromatic Solvents | 171 |
P105 D.V. Konarev, A.L. Litvinov, R.N. Lyubovskaya, A.Yu. Kovalevsky, X. Li, P. Coppens, I.S. Neretin, and Yu.L. Slovokhotov
Synthesis and Crystal Structures of Solvent Free and Multi-Component Complexes of Fullerenes with Metal Tetraarylporphyrins | 172 |
P106 A.V. Usatov, E.V. Martynova, I.S. Neretin, Yu.N. Novikov, and Yu.L. Slovokhotov
Synthesis and Structure of the First Mononuclear Osmium Complexes with η2-coordinated C60 and C70 Fullerenes | 173 |
P107 I.S. Uzkikh, E.I. Dorozhkin, O.V. Boltalina, and L.N. Sidorov
Selective trifluoromethylation of fullerenes | 174 |
P108 F.V. Sharipova, A.G. Ibragimov, L.V. Spirikhin, U.M. Dzhemilev, and O.M. Nefedov
Fullerene C60 in the Reaction of Cycloaddition to S- and N-containing Unsaturated Compounds | 175 |
10. Fullerene containing polymers and their properties |
P109 M. Xu, M. Gu, T. Zhang, and X. Yu
A Novel Fullerene C60 Derivative of Poly(propylene imine) Dendrimer | 178 |
P110 B.B. Troitskii, G.A. Domrachev, L.V. Khokhlova, L.I. Anikina, V.N. Denisova, I.A. Novikova, J.A. Marsenova, and L.A. Yaschuk
Inhibition of Thermal and Thermo-Oxidative Degradation of Copolymers of MMA by Fullerene C60 | 179 |
P111 I. Sapurina, A. Gribanov, M. Mokeev, V. Zgonnik, M. Trchova, and J. Stejskal
Polyaniline Composites with Fullerene C60: Preparation and Properties | 180 |
P112 N. Yevlampieva, P. Lavrenko, E. Melenevskaya, L. Vinogradova, E. Rjumtsev, and V. Zgonnik
Molecular Properties of Fullerene C60 Complexes with Cycle Containing Polymers in Solutions | 181 |
P113 V.T. Lebedev, Gy. Törok, L. Cser, A. Brulet, D.N. Orlova, V.P. Budtov, V.A. Bershtein, V.N. Zgonnik, L.V. Vinogradova, and E.Yu. Melenevskaya
Neutron Spin-echo Study of Dynamics of Poly(styrene) Stars with C60-core in Solutions and in the Bulk | 182 |
P114 N.I. Matveeva, E.V. Tarasova, and M.A. Sibileva
Complex Formation of Fullerenes with Syntetic Polymers and DNA in Water and Water-Salt Solutions | 183 |
P115 O.V. Nazarova, E.F. Panarin, I.I. Zaitseva, N.A. Michailova, G.M. Pavlov, L.S. Litvinova, and E.E. Kever
Modification of Fullerene by Water-Soluble Polymers Containing Amino End Groups | 184 |
P116 A.Yu. Ershov, I.I. Gavrilova, E.F. Panarin, E.V. Korneeva, and G.M. Pavlov
Synthesis of Fullerene-Containing Polymers Based on N-vinylpyrrolidone and N-allylamine | 185 |
P117 V.N. Zgonnik, S.V. Gladchenko, and G.A. Polotskaya
Fullerene-polystyrene Compositions: Transport and Relaxation Properties | 186 |
P118 V.N. Zgonnik, L.V. Vinogradova, E.Y. Melenevskaya, K.Y. Amsharov, Yu.F. Biryulin, J.J. Kever, A.V. Novoselova, and P.N. Lavrenko
Synthesis of Fullerene Containg Polymers and Investigation of Specific Interactions in this Systems | 187 |
P119 K.Y. Amsharov, L.V. Vinogradova, E.Y. Melenevskaya, J.J. Kever, P.N. Lavrenko, and V.N. Zgonnik
Synthesis and Molecular Structure of New Hybrid Star-Shaped Fullerene Containg Polymers | 188 |
P120 R.R. Das, S. Samal, and K.E. Geckeler
Preparation of Water-Soluble Poly(allyamine)-Bound C60 | 189 |
P121 A.V. Okotrub, P.K. Jain, N.F. Yudanov, A.I. Romanenko, and Ph.A. Pruss
Development of Composite Polymeric Films Containing Carbon Nanotubes | 190 |
P122 V.P. Belousov, I.M. Belousova, V.A. Grigor'ev, V.N. Zgonnik, E.U. Melenevskaya, and A.G. Scobelev
Aqueous Solutions of Fullerene-containing Polymers and Composites as Effective Optical Power Limiting Materials | 191 |
P123 V.M. Kornilov and A.N. Lachinov
STM Study of Emission Properties of Fulleren Containing Polymer | 192 |
11. Organometalic derivatives of fullerenes |
P124 V.V. Bashilov, P.V. Petrovskii, B.L. Tumanskii, and V.I. Sokolov
The New Heterobimetallic Complexes of C60 and C70 having p-bonded Palladium with p-chiral Ligands | 193 |
P125 O.G. Kalina, B.L. Tumanskii, V.V. Bashilov, S.P. Solodovnikov, and V.I. Sokolov
EPR Study of Paramagnetic Derivatives of 1,2-dihydro-1,2-[3',4'-ortho-benzoquinono]fullerene-[60] | 194 |
P126 G.V. Markin, G.A. Domrachev, B.S. Kaverin, V.L. Karnatsevich, A.I. Kirillov, A.M. Ob'yedkov, S.N. Titova, and S.Ya. Khorshev
Thermal and Thermo-plasmachemical Decomposition of Fullerene C60 and Fullerene Complex C60Fe(CO)4 | 195 |
12. Photoelectric and optic properties of fullerenes |
P127 A.I. Ryasnyansky, R.A. Ganeev, N.V. Kamanina, M.K. Kodirov, I.A. Kulagin, and T. Usmanov
Nonlinear Optical Properties of Fullerene Solutions and Films | 196 |
P128 I. Manika, J. Maniks, R. Pokulis, and J. Kalnacs
Illumination Time-evolution and Wavelength Dependence of the Photoinduced Hardening of C60 Crystals | 197 |
P129 D.V. Dyachenko-Dekov, Yu.L. Iunin, A.N. Izotov, V.V. Kveder, R.K. Nikolaev, V.I. Orlov, Yu.A. Ossipyan, N.S. Sidorov, and E.A. Steinman
To the Nature of Deformation Induced Defects in C60 Crystals | 198 |
P130 V.P. Belousov, I.M. Belousova, O.B. Danilov, V.A. Grigor'ev, E.A. Gavronskaya, A.G. Kalintsev, V.N. Zgonnik, N.V. Kamanina, A.P. Zevlakov, A.V. Kris'ko, N.G. Mironova, A.N. Ponomarev, E.N. Sosnov, A.G. Scobelev, M.S. Yur'ev, and V.E. Yashin
The Laser Radiation Nonlinear-optical Limiters Based on Fullerene-containing Media: Solutions, Polymers and Solid-state Matrices | 199 |
P131 N.V. Kamanina, V.N. Sizov, and D.I. Stasel'ko
Study of Nonlinear Optical Properties of Fullerene-doped p-conjugated Organic Systems: Holographic Applications | 200 |
P132 E.A. Batalov, V.K. Malinovsky, A.M. Pugachev, N.V. Surovtsev, and A.P. Shebanin
Low-frequency Raman scattering in a Pristine C60 Crystalline Film: Effect of Dynamical Orientational Disorder | 201 |
P133 V.K. Malinovsky, N.V. Surovtsev, A.P. Shebanin, A.V. Okotrub, and Yu.V. Shevtsov
Disorder-induced Inelastic Light Scattering in Photopolymerized Film of C60 | 202 |
P134 B.S. Kaverin, G.A. Domrachev, E.G. Domracheva, A.M. Ob'yedkov, S.N. Titova, L.A. Leites, S.S. Bukalov, and L.A. Mikhalitsyn
Raman Spectroscopy of Carbon Shells over Filament-like Germanium Crystals prepared by Thermal MOCVD from Tetra-n-butylgermane | 203 |
P135 A.V. Talyzin, U. Jansson A.V. Usatov, V.V. Burlakov, V.B. Shur, and Y.N. Novikov
Comparative Study by Raman Spectroscopy of Ti complex Cp2Ti(η2-C60)·C6H5CH3 and TixC60 Films | 204 |
P136 A.G. Ryabenko, P.V. Fursikov, E.P. Krinichnaya, A.P. Moravsky, T.V. Dorofeeva, and G.I. Zvereva
Using Absorption Spectroscopy for Determination of SWNT | 205 |
P137 L.A. Mikhalitsyn and S.S. Bukalov
Capabilities of Laser Micro-Raman Spectroscopy with Spatial Resolution in Identification of Fullerenes and other Carbon Modifications | 206 |
P138 Yu.F. Biryulin, S.N. Mikov, S.S. Moliver, and V.N. Zgonnik
Quantum Chemistry and Spectroscopy of Molecules and Crystals Based on Fullerene C60 | 207 |
P139 I.B. Zakharova, T.L. Makarova, I.T. Serenkov, and V.I. Sakharov
Spectral Analysis of above-, below-, and near-band-edge Phenomena in Fullerene Films | 208 |
P140 Yu.F. Biryulin, D.A. Syckmanov, L.V. Vinogradova, and V.N. Zgonnik
The Influence of some Organic Addenda upon the HOMO-LUMO Gap in C60 Fullerene | 209 |
P141 O.B.Tomilin and E.E. Muryumin
The Local States in Energy Spectra of Carbon Nanotubes | 210 |
P142 A.S. Zgoda, A.V. Chugreev, B.S. Razbirin, A.N. Starukhin, V.P. Smirnov, L.N. Pakhomov, Yu.S. Grushko, S. Kolesnik, P.-F. Coheur, J. Lievin, R. Colin, B. Honerlage, and R. Levy
Vibronic Spectroscopy of C60Cl24 | 211 |
P143 D.A. Kurdyukov, Yu.A. Kumzerov, A.V. Medvedev, A.B. Pevtsov, V.N. Semkin, and M.V. Zamoryanskaya
Luminescence and Cathodoluminescence from C60 Encapsulated in the Porous Matrixes | 212 |
P144 I.M. Belousova, N.G. Mironova, and M.S. Yur'ev
The Theoretical Investigation of Optical Limiting in Fullerene-Containing Media | 213 |
P145 V.P. Belousov, I.M. Belousova, V.A. Grigor'ev, T.D. Murav'eva, A.N. Ponomarev, E.A. Gavronskaya, and A.G. Scobelev
Optical Limiting based on Nonlinear Light Scattering by Different Fulleroid Particles Suspended in Water and Organic Solvents | 214 |
P146 I.M. Belousova, V.P. Belousov, V.V. Danilov, O.B. Danilov, E.V. Komarov, E.N. Sosnov U. Siegner, A. Nevejina, and O. Verhahn
Nonlinear Photonics of Higher Fullerenes under Femtoseconds Excitation | 215 |
P147 T.Yu. Astakhova and G.A. Vinogradov
Calculation of Raman-active Modes in Carbon Nanotubes | 216 |
13. Transport properties in fullerenes and nanotubes |
P148 M. Menon, A. Andriotis, D. Srivastava, and L. Chernozatonskii
Quantum Transport Properties of Carbon Nanotube Y-junctions | 217 |
P149 J. Cerar and J. Skerjanc
Dependence of the Molar Conductivity of Aqueous Solutions of Lithium Fullerenehexamalonate, Th-C66(COOLi)12, on Temperature | 218 |
P150 I.A. Tchmutin, A.T. Ponomarenko, E.P. Krinichnaya, L.I. Tkachenko, A.P. Lisitskaya, G.I. Kozub, and O.N. Efimov
Conductivity of the Single Wall Nanotubes - polyacetylene Composites | 219 |
P151 A.I. Romanenko, A.V. Okotrub, Cheng Dong, Yongming Ni, O.B. Anikeeva, L.G. Bulusheva, and N.F. Yudanov
Transport and Magnetic Properties of Multiwall Carbon Nanotubes before and after Bromination | 220 |
14. Synthesis and properties of new fulerene-like materials |
P152 W.-B. Ko, K. N. Baek and I.K. Yeo
The Oxidation of Fullerenes [C60 and C70] with Various Oxidants by Ultrasonication | 221 |
P153 M. Gu, T.B. Tang, and D. Feng
A dielectric study on fullerite charged with CO | 222 |
P154 M. Gu and T.B. Tang
An orientational glassy state in solid C60 charged with NO: A study with 13C NMR and dielectric spectroscopies | 223 |
P155 S. Tomita, T. Sakurai, H. Ohta, M. Fujii, and S. Hayashi
Electron spin resonance of carbon onions: the correlation between the structure and electronic properties | 224 |
P156 Sho-ichi Iwamatsu, Yukihiro Kitamura, Masanori Hamajima, Inami Koike, and Shizuaki Murata
Photochemical and Thermal Rearrangement of Cyclohexadiene Derivatives of C60: Formation and Characterization of Novel Compounds Relating to Bis(fulleroid) | 225 |
P157 M.I Heggie and C.P. Ewels
Autocatalysis of annealing during growth of carbons | 226 |
P158 A. Hoffman and A. Heiman
Mechanism of Nano-Diamond Film Formation on a Preferentially Oriented Vertical Basal Plane Graphitic Precursor | 227 |
P159 A.L. Emelina, A.S. Alikhanyan, M.I. Nikitin, and V.F. Sukhoverkhov
Chemical Properties of The Highest [60]FuIIerene Fluorides | 228 |
P160 E.V. Rut'kov, N.R. Gall, and A.Ya. Tontegode
C60 adsorption on Si(100) at T = 300-1300 K | 229 |
P161 N.N. Breslavskaya
Theoretical Study on Relative Stability of Isomers of Fluorofulerenes C84 | 230 |
P162 A.Ya. Borshchevsky, V.E. Alyoshina, O.V. Boltalina, L.N. Sidorov, A.A. Astakhov, and N.B. Shustova
Full Scale Mass Spectrometric Study of C60 Fluorination with Some Bynary and Complex Metal Fluorides: Stationary Kinetics and a Model for Solid-State Reactions | 231 |
P163 D.B. Ponomarev, O.V. Boltalina, A.Ya. Borshchevsky, and L.N. Sidorov
Thermal Ionization in the Fluorofullerene Vapors | 232 |
P164 A.Ya. Borshchevsky, V.E. Alyoshina, E.V. Skokan, I.V. Arkhangelskii, and A.A. Astakhov
Fluorination of Cubic and Hexagonal Modifications of C60 with Solid Manganese Trifluoride | 233 |
P165 A.A. Popov, V.M. Senyavin, V.A. Davydov, I.S. Neretin, Yu.L. Slovokhotov, and M.V. Korobov
Aromatic Solvates of Fullerene as Precursors for Polymerized C60 | 234 |
P166 A. Dzyabchenko, V. Agafonov, and V. Davydov
Revision of Crystal Structures of Three Pressure Polymerized C60 Phases: Theoretical Predictions and Experimental Evidence | 235 |
P167 A. Dzyabchenko, V. Agafonov, and R. Ceolin
Crystal Structure of the 1:1 C60 - toluene Solvate Found by Lattice-energy Minimization and Confirmed by X-ray Powder Diffraction | 236 |
P168 A.S. Lobach and V.V. Strelets
Electrochemical Benavior and Parameters of C70H36-46 Hydrofullerenes | 237 |
P169 A.G. Ryabenko, V.E. Muradyan, M.F. Budyka, T.S. Zyubina, S.E. Esipov, and N.I. Cherepanova
Mass Spectral Investigation and PM3 Modeling of C2 Cluster Addition to Fullerene C60 | 238 |
P170 E.A. Smorgonskaya, A.M. Danishevskii, G.N. Mosina, O. Marty, C. Jardin, R. Meaudre, S.K. Gordeev, and A.V. Grechinskaya
TEM and HRTEM Studies of Nanoporous Carbon Produced from SiC Powders | 239 |
P171 A.M. Shikin, G.V. Prudnikova, V.K. Adamchuk, H. Soe, and K-H. Rieder
Synthesis of Graphite Stripes on Stepped Ni(771) Surface and their Intercalation by Ag and Cu | 240 |
P172 I.O. Bashkin, V.E. Antonov, A.I. Harkunov, A.I. Izotov, S.S. Khasanov, V.I. Kulakov, A.P. Moravsky, Yu.A. Ossipyan, E.G. Ponyatovsky, Yu.M. Shulga, E.A. Steinman, and L.V. Zorina
BCC and FCC C60 Hydrofullerites after High-Pressure Synthesis | 241 |
P173 N.F. Goldshleger, G.N. Boiko, O.S. Roshchupkina, B.P. Tarasov, and Yu.M. Shul'ga
Hydrogen Transfer in Fullerene-containing Systems | 242 |
P174 R.R. Abzalimov, R.F. Tuktarov, Yu.V. Vasil'ev, Sh.K. Nasibullaev, F. Hauke, U. Reuter, A. Hirsh, and T. Drewello
Mass Spectrometric Study of Positive Ions from Azafullerenes C59N and C59NH | 243 |
P175 Sh.K. Nasibullaev, Y.V. Vasil'ev, R.R. Abzalimov, A.S. Lobach, I.O. Bashkin, D. Walles, and T. Drewello
Formation and Characterization of Negative and Positive Ions of Hydrogenated Fullerenes | 244 |
P176 Yu.V. Vasil'ev, R.R. Abzalimov, R.F. Tuktarov, Sh.K. Nasibullaev, F. Hauke, U. Reuter, A. Hirsh, and T. Drewello
Molecular Negative Ions of Azafullerenes and Their Derivatives: a Case Study | 245 |
P177 Y.A. Mackeyev, P.A. Troshin, O.V. Boltalina, M.A. Kyrikova, and N.V. Chelovskaya
C60F48 Solvates with Alkanes: the DSC Study | 246 |
P178 N.I. Denisenko, A.V. Streletskiy, P.A. Troshin, and O.V. Boltalina
Fluorination of C60Br24 and C60Br8 | 247 |
P179 A.A. Goryunkov, V.Yu. Markov, O.V. Boltalina, L.N. Sidorov, R. Taylor, and A.K. Abdul-Sada
The Selective Synthesis of C60F44 with the Use of AgF2 | 248 |
P180 M.V. Baidakova, N.A. Feoktistov, V.G. Golubev, S.A. Grudinkin, A. Kruger, V.G. Melehin, V.Yu. Osipov, and A.Ya. Vul'
Fabrication of Diamond Films by Hot Filament CVD with Ultradisperse Diamond Seeding | 249 |
P181 G.J. Adriaenssens, V.G. Afanasiev, N.A. Feoktistov, V.G. Golubev, S.A. Grudinkin, A. Kruger, V.G. Melehin, V.Yu. Osipov, and A.Ya. Vul'
Hot Filament CVD Growth of Disperse Diamond Particles | 250 |
P182 V.V. Avdonin, N.A. Kiselev, A.V. Krestinin, V.A. Rafeev, A.V. Volkov, and G.I. Zvereva
Oxidation Kinetics of ARC Discharge Products by Oxygen | 251 |
P183 A.G. Starodubov, M.Medvetsky, A.M.Shikin, G.V.Prudnikova, and V.K.Adamchuk
Weaking of Chemical Interaction in Graphene - Ni(111) System as a Result of Noble Metals Interaction | 252 |
P184 N.V. Drichko, D.A. Kurdyukov, Yu.A. Kumzerov, B.V. Petrov, V.N. Semkin, R. Almairac, P. Dieudonne, Y. Errammach, and F. Rachdi
C60 Embedded in the Porous Dielectric Matrixes. Fabrication and Characterization | 253 |
P185 V.F. Sukhoverkhov, A.L. Emelina, M.I. Nikitin, and A.S. Alikhanyan
Synthesis of Pure Fullerene Fluoride C60F48 under Static Conditions | 254 |
P186 A.V. Bulgakov, O.F. Bobrenok, V.I. Kosyakov, I. Ozerov, W. Marine, M. Hedén, F. Rohmund, and E.E.B. Campbell
Phosphorus Clusters: Synthesis in the Gas-phase and Possible Cage-like Structures | 255 |
P187 V.V. Strelets and A.S. Lobach
Linear Relationship between Reduction Potentials and Electron Affinities of Fullerenes and their Derivatives | 256 |
P188 O.P. Tchernogorova, E.I. Drozdova, V.M. Blinov, O.A. Bannykh, and N.N. Mel'nik
Transformation of Fullerenes in Various Metallic Matrixes at High Temperatures and High Pressures | 257 |
P189 Yu.M. Shul'ga, V.M. Martynenko, B.P. Tarasov, V.N. Fokin, V.I. Rubtsov, N.Yu. Shul'ga, G.A. Krasochka, N.V. Chapysheva, V.V. Shevchenko, and D.V. Schur
On the Products of C60Dx Thermal Decomposition | 258 |
P190 R.G. Bulgakov, A.S. Musavirova, Z.P. Masharipova, and E.N. Nevyadovskiy
The New C60 Fullerene Property - Generation of Radiating Electron-Exciting States in Liquid- Phase Redox-Reactions | 259 |
P191 R.G. Bulgakov, A.S. Musavirova, Z.P. Masharipova, E.N. Nevyadovskiy, M.T. Golikova, and Z.I. Ushakova
The Generation of Fullerenyl Radicals and Chemilumainescence in their Oxidation by Oxygen in C60 - Et3Al - 02 System | 260 |
P192 E.V. Rut'kov, N.R. Gall, A.Ya. Tontegode, and Yu.N. Tsarev
C60 Molecular Contact Stability on Surface Chemical Compounds on (100)W | 261 |
P193 P.A. Troshin, A.A. Popov, N.S. Nesterenko, N.I. Denisenko, and O.V. Boltalina
Decomposition Behavior of the Bromofullerenes | 262 |
P194 N.S. Chilingarov, I.V. Golyshevsky, A.V. Kepman, J.V. Rau, S.V. Abramov, and L.N. Sidorov
Fluorination of [60]fullerene by Molecular Fluorine using MnF2(s) and MnF3(s) as a Support | 263 |
15. New approaches in the field of cluster science |
P195 A. Krüger, E. Osawa and A.Y. Vul'
Two Breakthrough Transformations in Nanodiamond | 266 |
P196 P. Alvarado-Leyva and J. Dorantes-Davila
Orientation Effects on the Magnetic Properties of a Pair Cr6 and V6 Atomic Clusters Embedded in Bulk Fe | 267 |
P197 C.N. Murthy and K.E. Geckeler
Cluster Formation of [60]Fullerene in Organic Solvent Systems: A Dynamic Light Scattering Study | 268 |
P198 S. Samal and K.E. Geckeler
Aggregation Behavior of Novel Water-Soluble Fullerene-Cyclodextrin Conjugates | 269 |
P199 Gy. Törok, V.T. Lebedev, L. Cser, and D.N. Orlova
Anomalous Clustering of C60 in Toluene by Small-angle Neutron Scattering | 270 |
P200 M.Yu. Kornilov, T.V. Ljubchuk, A.V. Mikhailenko, V.V. Plakhotnyk, S.D. Isaev, D.V. Schur, and V.B. Chernogorenko
Closed Aromatic Surfaces (CAS)as Integration of Fullerenes, Nanotubes and Other New Forms of Carbon | 271 |
P201 M.Yu. Kornilov, V.V. Plakhotnyk, A.V. Mikhailenko, T.V. Ljubchuk, and D.V. Reutov
Carbon Nanorings: 6-Torus Model | 272 |
P202 I.A. Volkov and I.A. Kushmar
A Problem of Carbon Clusters as a Variation of a Many-body Problem | 273 |
P203 V.Zh. Madirbaev, A.E. Zarvin, N.G. Korobeischikov, and R.G. Sharafutdinov
About the Course of Ion-cluster Reactions Acivated by an Electron Beam in Mixtures of Argon with Methane and Monosilane | 274 |
P204 V.I. Berezkin
A New Model of Closed many-layer Carbon Particle Inception and Growth from Fullerene Clusters | 275 |
P205 A.S. Golub, N.D. Lenenko, Ya.V. Zubavichus, Yu.L. Slovokhotov, Yu.N. Novikov, A.M. Marie, and M. Danot
Cluster Approach to Synthesis of Ternary Metal Sulfides: using Molybdenum Disulfide Single-layers as a Precursor | 276 |
P206 A. Burtsev, S.I. Troyanov, P.A. Troshin, A.A. Popov, N.I. Denisenko, and O.V. Boltalina
Bromination of [60]fullerene in Arene Solutions: Syntheses and Crystal Structures | 277 |
P207 O.G. Rybchenko, S.I. Rybchenko, and V.Sh. Shekhtman
X-ray Diffraction Study of Phototransformed C60 Films | 278 |
P208 B.P. Tarasov, Yu.M. Shul'ga, V.E. Muradyan, E.P. Krinichnaya, N.F. Goldshleger , O.N. Golodkov, V.N. Fokin, O.N. Efimov, S.Yu. Zaginaichenko, D.V. Schur, J.P. Maehlen, B.C. Hauback, and V.A. Yartys
Carbon Nanostructures for Hydrogen Storage | 279 |
P209 V.Ya.Davydov, and E.Osawa
Hydrogenation and Dehydrogenation of Fullerene C60 Chemisorbed on Pt Particles | 280 |
P210 V.V. Mukhamadiarov, A.G. Glazov, V.V. Brazhkin, E.L. Gromnitskaya, A.G. Lyapin, S.V. Popova, and O.V. Stal'gorova
A Directional Cluster Anisotropy Detected by the Ultrasonic Method in Graphite-Like Disordered Carbon Prepared from C60 under Pressure | 281 |
P211 E.V. Kalashnikov and S.N. Rachkulik
The Method of the Production of Atomic Clusters and Fractal Structures | 282 |
P212 M.A. Khodorkovskii, T.O. Artamonova, A.L. Shahmin, and S.V. Murashov
Mass-spectroscopic Study of Small Carbon Clusters | 283 |
P213 V.M. Davidenko, S.V. Kidalov, S.S. Ordanyan, V.A. Yashin, T.N. Vasilevskaya, and A.Ya. Vul'
Fullerene Catalyst for Diamond's Synthesis | 284 |
P214 A.E. Zarvin, N.G. Korobeischikov, V.Zh. Madirbaev, and R.G. Sharafutdinov
Formation of Mixed Clusters in Pulse Jets of Monosilane and Methane Mixtures with an Inert Gas | 285 |
P215 Yu.M. Volfkovich, O.N. Efimov, B.P. Tarasov, A.Yu. Rychagov, E.P. Krinichnaya, V.E. Sosenkin, N.F. Nikolskaya, R.O. Loutfy, and A.P. Moravsky
Research of Porous Structure, Density of Adsorbed Hydrogen in Carbon Nanomaterials and Electrochemical Generation, Adsorption - desorption and Electrooxidation in them of Hydrogen | 286 |
P216 S.D. Kushch, V.E. Muradyan, P.V. Fursikov, and N.S. Kuyunko
Fullerene Black: Catalytic Activity in n-alkanes Dehydrocyclization and Reactivity | 287 |
P217 A. Andreev and T. Ueda
Detection of Carbon Particle and Cluster Parameters by Laser-Induced Plasma Line Radiation | 288 |
P218 V.N. Andreev, S.E. Nikitin, and D.V. Leshchev
Metastable States of Photochromic Cluster (NH4)6[Mo7O24]-C6H8O7 | 289 |
P219 Z.Z. Latypov, G.K. Golikov, and L.N. Gall
Methods of Separating Fullerenes and their Compounds in Nonhomogeneous Electric Fields | 290 |
P220 E.E. Lin
Cluster Model of Diamond Formation from Different Modifications of Solid Carbon | 291 |
P221 S.D. Kushch, V.E. Muradyan, P.V. Fursikov, N.S. Kuyunko, G.I. Davydova, and Eu.I. Knerel'man
Influence of Fullerene Black Preparation Conditions on its Catalytic Activity and Reactivity | 292 |
16. Computer simulation of carbon clusters, their derivatives and solids based on fullerenes |
P222 A. Pérez-Garrido, J. D. Catala and F. Alhama
Geometry and Electronic Structure of Fullerenes with Symmetrically Arranged Defects | 293 |
P223 G. Van Lier, F. De Proft, P.W. Fowler, and P. Geerlings
Aromaticity of Fullerenes and Single-Walled Carbon Nanotubes | 294 |
P224 Shaoqing Wang and Hengqiang Ye
Ab initio Study of Linear and Cyclic Isomers of Carbon Clusters | 295 |
P225 Y. F. Zhao, G.G. Samsonidze, and B.I. Yakobson
Carbon Links between Single-walled Carbon Nanotubes: "Point-soldering" of the Tubes Wall to Wall to make Mechanical Parts and Electronic Devices | 296 |
P226 Y.F. Zhao, Ge.G. Samsonidze, and B.I. Yakobson
Feasibility of Atomic Clusters as Lateral Cross-Links in Fullerene Nanotube Arrays | 297 |
P227 G. Klimko and M. Mestechkin
The Accidental Degeneracy in D-Shell and Fullerenes | 298 |
P228 V.I. Zubov, J.N. Teixeira Rabelo, and I.V. Zubov
On the Thermodynamic Properties of Higher and Smaller Fullerites | 299 |
P229 N.N. Degtyarenko, V.F. Elesin, and L.A. Openov
Metastable Nitrogen Clusters and their Ensembles | 300 |
P230 D.V. Bulaev, V.A. Geyler, and V.A. Margulis
Electrodynamic Response of a Nanosphere | 301 |
P231 O.B. Tomilin, O.V. Boyarkina, and L.V. Akamova
The Relative Stability of the Small Zinc Clusters of the Linear, Planar Cyclic, and Bulk Structure | 302 |
P232 Z. Slanina, F. Uhlik, O.V. Boltalina, and V.P. Kolesov
Isomeric C60F36(g) Species:Computed Structures and Heats of Formation | 303 |
P233 Z. Slanina, F. Uhlik, and O.V. Boltalina
A Computational Study of Entropy Rules for Charged Fullerenes | 304 |
P234 L.A. Chernozatonskii, A.L. Chistyakov, E.G. Gal'pern, A.R. Sabirov, and I.V. Stankevich
New Polymer Forms of Carbon on the Base of Fullerenes and Nanotubes | 305 |
P235 A.L. Chistyakov and I.V. Stankevich
Is it Possible the Existence of Exo-and Endohedral Complexes of C20 Fullerene? | 306 |
P236 E.G. Gal'pern, I.V. Stankevich, and A.L. Chistyakov
Multiple-decker Sandwich Macromolecules with η5-π-bonds on the Base of Biscyclopentadienyl Derivatives C60H10 of Fullerene C60: Modeling of Geometry and Electron Structure by Quantum-chemical Methods | 307 |
P237 A.A. Kuzubov, P.V. Avramov, F.N. Tomilin, P.O. Krasnov, and S.G. Ovchinnikov
Electronic and Atomic Structure of Carbon tori Complexes with Lithium Atoms | 308 |
P238 P.V. Avramov, S.G. Ovchinnikov, F.N. Tomilin, A.A. Kuzubov, and P.O. Krasnov
Dynamics of Atomic Base and Electronic Structure of Carbon Nanostructures and their Derivatives | 309 |
P239 V.V. Zverev and I.A. Nuretdinov
Symmetry and Asymmetry of the Properties of Functionally Substituted Fullerenes. Through-Bonds and Through-space Interactions | 310 |
P240 N.N. Degtyarenko, V.F. Elesin, N.E. L'vov, L.A. Openov, and A.I. Podlivaev
Quasi One-dimensional Ensembles of Carbon Clusters C8 | 311 |
P241 O.B. Tomilin and S.A. Lesin
The Modelling of the Process of the Fullerene Formation | 312 |
P242 O.B. Tomilin, O.V. Boyarkina, and L.V. Akamova
The Electron Density in Small Homoatomic Clusters of the II B Group Elements | 313 |
P243 S.S. Moliver
Quantum Chemistry of Carbon Materials: Diamond, Graphite and C60 | 314 |
P244 O.E. Kvyatkovskii, M.G. Shelyapina, B.F. Shchegolev, L.S. Vorotiliva, and I.B. Zakharova
Ab initio Cluster Calculations for Halogenofullerenes C60F24, C60Cl24 and C60Br24 | 315 |
P245 B.M. Darinsky, D.S. Sajko, and T.V. Pashneva
Model of closed Atomic Clusters | 316 |
P246 I.V. Zaporotskova, N.G. Lebedev, and L.A. Chernozatonski
The Investigation of Processes of Flourination and Oxidation of Single-Walled Carbon Nanotubes in MNDO Approach | 317 |
P247 A.V. Bulgakov, M. Hedén, F. Rohmund, and E.E.B. Campbell
The Competition between delayed Ionisation and Fragmentation of C60 revisited: Importance of the Triplet States | 318 |
P248 T.Yu. Astakhova, O.D. Gurin, and G.A. Vinogradov
Radial-Longitudinal Solitons in Carbon Nanotubes | 319 |
P249 O.D. Gurin, T.Yu. Astakhova, G.A. Vinogradov, and M. Menon
Influence of the Local Strains on the Reactivity of Carbon Nanotubes | 320 |
P250 A.P. Popov and I.V. Bazhin
Interaction of Carbon Nanotubes with Molecules and Substrates | 321 |
P251 A.P. Popov and I.V. Bazhin
Three-dimensional Cubic Phases of Polymerized Fullerenes | 322 |
P252 A.P. Popov and I.V. Bazhin
Formation of the Polymerized Transition-Metal-Fullerenes | 323 |
P253 N.G. Lebedev, I.V. Zaporotskova, and L.A. Chernozatonskii
On the Estimation of Piezoelectric Modules of Carbon and Boron Nitride Nanotubes | 324 |
P254 I.V. Zaporotskova, N.G. Lebedev, and L.A. Chernozatonskii
Some Features of Hydrogenization of Single-walled Carbon Nanotubes | 325 |
P255 Oleg Kidun and Jamal Berakdar
Correlation Effects in (e,2e) Process on C60 | 326 |
P256 Ge.G. Samsonidze, G.G. Samsonidze, and B.I. Yakobson
Kinetic Theory of Mechanical Strenght of Carbon Nanotubes | 327 |
P257 G.A. Domrachev, E.G. Domracheva, L.G. Domracheva, G.V. Markin, and Yu.A. Shevelev
Theoretical Research of the Existence Possibility and Stability for Multi-Endo-Lithium- Fullerene C60 Complexes | 328 |
17. Solutions |
P258 O.F. Bezrukov, Yu.S. Tchernyshev, S.V. Markova, and V.V. Kljubin
Fullerene in Nonionic Surfactants and their Micellar Phases | 329 |
P259 A.N. Ponomarev, B.M. Aksel'rod, N.A. Charykov, V.V. Klepikov, O.Yu. Ryazanova, V.I. Seregin, B.A. Shakhmatkin, L.A. Solov'eva, and A.M. Starodubtsev
Diagram of Solubility in the System C60 - C70 - o-C6H4(CH3)2 at -20°C | 330 |
P260 A.N. Ponomarev, B.M. Aksel'rod, N.A. Charykov, V.V. Golubkov, A.Yu. Isakov, V.V. Klepikov, O.Yu. Ryazanova, V.I. Seregin, B.A. Shakhmatkin, L.A. Solov'eva, and A.M. Starodubtsev
X-Ray Small-Angle Light Diffusion of Fullerene Solutions C60 and C70 in o-C6H4(CH3)2 at 25°C | 331 |
P261 S.P. Rozhkov, A.S. Goryunov, G.A. Sukhanova, A.G. Borisova, N.N. Rozhkova, and G.V. Andrievsky
Solvent Mediated and Long-Range Interaction of Protein Molecules with Hydrated Fullerene Clusters in Water Solutions | 332 |
P262 M.V. Korobov, N.V. Avramenko, N.I. Ivanova, E.B. Stukalin, and V.S. Romanova
Solubilization of Fullerene-based Materials in Water and Organic Solvents | 333 |
P263 E.V. Anufrieva, M.G. Krakovyak, T.D. Ananieva, T.N. Nekrasova, and R.Yu. Smyslov
Interaction of Polymers with Fullerene C60 in Solution. Effect of the Chemical Structure, the Polymer Topology, and the Solvent Nature | 334 |
P264 S.G. Polushin, V.A. Nikitin, A.N. Ponomarev, and E.I. Rjumtsev
Magnetic Birefringence in Solutions of Nanotube-Containing Materials | 335 |
18. Biology and Medicine |
P265 S.M. Andreev, A.A. Babakhin , A.O. Petrukhina, and V.S. Romanova
Immunogenic Activity of Fullerene Compounds | 336 |
P266 I.M. Andreev, V.S. Romanova, and S.M. Andreev
C60 Amino Derivatives Behave as Lipophylic Membrane-Permeating Anions | 337 |
P267 L.B. Piotrovsky, A.K. Sirotkin , L.N. Pozdniakova, M.A. Dumpis, and O.I. Kiselev
PVP/C60 Complexes Cause Destruction of Influenza Virus Envelope. An Electron Microscopic Study | 338 |
P268 V.P. Gubskaya, N.P. Konovalova, I.A. Nuretdinov, G.M. Fazleeva, and F.G. Sibgatullina
New Derivatives of Fullerene C60 with Pharmacophoric Groups. Synthesis , Structure and Biological Activity | 339 |
P269 E.V. Babynin, I.A. Nuretdinov, V.P. Gubskaya, and F.S. Gizatullin
Cyto- and Genotoxicity Activity of Water-Soluble 1-methyl-2-(3,5-ditret butil-4- oxy-phenyl)3,4-Fulleropyrrolidin | 340 |
P270 R.A. Kotelnikova, G.N. Bogdanov, G.V. Zotina. V.S. Romanova, and Z.N. Parnes
Creation of a Donor-Acceptor Pair for a Study of the Intraprotein Electron Transfer Involving Fullerene C60 Amino Acid Derivatives | 341 |
P271 N.G. Podosenova, V.M. Sedov, A.S. Kuznetsov, L.V. Sharonova, and N.V. Drichko
The Importance of the Silicagel Memory to C60 at the Lipoproteides Specific Adsorption | 342 |
P272 V.M. Sedov, N.G. Podosenova, and A.S. Kuznetsov
Low Density Lipoproteid Redox at it's Adsorption on Fullerene's Silica | 343 |
P273 I.Ya. Podolski, E.V. Kondratjeva, I.V. Scheglov, M.A. Dumpis, and L.B. Piotrovsky
The Effect of Fullerene C60 Complexed with Poly-(N-vinyl-pyrrolidone) on the Navigation Learning and Spatial Memory Amnesia in Rats | 344 |
P274 G.V. Andrievsky, I.S. Burenin, I.M. Valueva, N.I. Polyanskaya, and L.M. Borisova
The New Data on Medicinal and Preventive Efficacy of Small Dozes of Hydrated C60 Fullerenes at the Modeling Cancer Pathologies | 345 |
P275 G.V. Andrievsky, A.D. Roslyakov, and L.M. Samochina
On the Ability of Hydrated C60 Fullerenes to Enhance the Enzyme Activity and to Protect the Native Structures of Albumins at Thermodenaturing Conditions in Vitro | 346 |
19. Post Deadline |
P276 V.P. Kolesov, T.S. Papina, S.M. Pimenova, V.A. Lukyanova, S.V. Melkhanova, O.V. Boltalina, P.A. Troshin, and A.S. Lobach
The Enthalpies of Formation of some Derivatives of Fullerene C60 and the Enthalpies of C-X Bonds (X=F,H) | 347 |
P277 V.V. Grachev, M.B. Belonenko, and N.G. Lebedev
On the Conductivity Tensor of Carbon Nanotubes | 348 |
P278 N.G. Lebedev, I.V. Ponomareva, and A.O. Litinskii
OSC-Model of Generation of Carbon Nanotubes on Quantum Dots of Diamond Surface | 349 |
P279 N.G. Lebedev, I.V. Zaporotskova, and L.A. Chernozatonskii
The Elastic Modules of Carbon and Boron Nitride Nanotubes in a molecular Cluster Model | 350 |
P280 M.B. Belonenko and N.G. Lebedev
On Pseudo-spine Formalism for Hubbard Model of Carbon Nanotubes | 351 |
P281 M.B. Belonenko, V.V. Diakov, and N.G. Lebedev
On Indirect Interactions of d-spins via Phonons in Carbon Nanotubes | 352 |
| AUTHOR INDEX | 353 |
| CONTENTS | 362 | |