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Общее количество найденных документов : 87
Показаны документы с 1 по 20
1.

A key role of tensile strain and surface termination in formation and properties of La0.7Sr0.3MnO3 composites with carbon nanotubes/E. A. Kovaleva [et al.] // Computational Materials Science:Elsevier, 2017. т.Vol. 139.-С.125-131
2.

Ab-initio investigation of thermoactivated directional transport of hydrogen molecules inside narrow carbon nanotubes/A. S. Fedorov, A. F. Sadreev // Physica status solidi B - Basic Solid State Physics, 2009. т.Т. 246,N № 11-12.-С.2598-2601
3.

Arc synthesis of silicon-doped heterofullerenes in plasma at atmospheric pressure/N. V. Bulina [et al.] // Fullerenes Nanotubes and Carbon Nanostructures:Marcel Dekker Inc., 2007. т.Т. 15,N № 5.-С.395-400
4.

Atomic structure and physical properties of fused porphyrin nanoclusters/P. V. Avramov [et al.] // Journal of Porphyrins and Phthalocyanines:World Scientific Publishing, 2014. т.Vol. 18,N Is. 7.-С.552-568
5.

Avramov P. V. Effect of carbon network defects on the electronic structure of semiconductor single-wall carbon nanotubes/P. V. Avramov, B. I. Yakobson, G. E. Scuseria // PHYSICS OF THE SOLID STATE:AMER INST PHYSICS, 2004. т.Vol. 46,N Is. 6.-С.1168-1172
6.

Band-gap unification of partially Si-substituted single-wall carbon nanotubes/P. V. Avramov [et al.] // PHYSICAL REVIEW B:AMER PHYSICAL SOC, 2006. т.Vol. 74,N Is. 24.- Ст.245417
7.

Calculation of the energy of binding of titanium and scandium complexes to the surface of carbon nanotubes/A. A. Kuzubov [et al.] // Russian Journal of Physical Chemistry B, 2009. т.Vol. 3,N Is. 4.-С.679-683
8.

Chernozatonskii L. A. Energy and electronic properties of non-carbon nanotubes based on silicon dioxide/L. A. Chernozatonskii, P. B. Sorokin, A. S. Fedorov // PHYSICS OF THE SOLID STATE:MAIK NAUKA/INTERPERIODICA/SPRINGER, 2006. т.Vol. 48,N Is. 10.-С.2021-2027
9.

Chernozatonskii L. A. New boron barrelenes and tubulenes/L. A. Chernozatonskii, P. B. Sorokin, B. I. Yakobson // JETP Letters, 2008. т.Vol. 87,N Is. 9.-С.489-493
10.

Churilov G. N. Preparation of fullerenes and nanotubes in coal plasma jet in kilohertz frequency range/G. N. Churilov, A. Y. Korets, Y. N. Titarenko // ZHURNAL TEKHNICHESKOI FIZIKI:MEZHDUNARODNAYA KNIGA, 1996. т.Vol. 66,N Is. 1.-С.191-194
11.

Churilov G. N. Synthesis of fullerenes and other nanomaterials in arc discharge/G. N. Churilov // Fullerenes Nanotubes and Carbon Nanostructures:Marcel Dekker Inc., 2008. т.Т. 16,N № 5-6.-С.395-403
12.

Churilov G. N. Two new discharges for production of fullerenes and nanotubes/G. N. Churilov // Progress in fullerene research. -Singapore ; New Jersey ; London:World Scientific, 1994.-С.135-138
13.

Co/multi-walled carbon nanotubes/polyethylene composites for microwave absorption: Tuning the effectiveness of electromagnetic shielding by varying the components ratio/M. A. Kazakova, N. V. Semikolenova, E. Y. Korovin [et al.] // Composites Science and Technology, 2021. т.Vol. 207.- Ст.108731
14.

Comparative analysis of two methods for synthesis of fullerenes at different helium pressures/A. I. Dudnik, I. V. Osipova, N. S. Nikolaev, G. N. Churilov // Fullerenes Nanotubes and Carbon Nanostructures, 2020. т.Vol. 28,N Is. 9.-С.697-701
15.

Controlled synthesis of fullerenes and endohedral metallofullerenes in high frequency arc discharge/G. Churilov [et al.] // Fullerenes Nanotubes and Carbon Nanostructures:Taylor and Francis, 2016. т.Vol. 24,N Is. 11.-С.675-678
16.

Correlation of the chemical properties of carbon nanotubes with their atomic and electronic structures/F. N. Tomilin [et al.] ; Translated by N. Korovin // Physics of the Solid State, 2004. т.Vol. 46,N Is. 6.-С.1179-1182
17.

Cyclic voltammetry as an activation method of TiO2 nanotube arrays for improvement of photoelectrochemical water splitting performance/N. A. Zos’ko, A. S. Aleksandrovsky, T. Kenova [et al.] // ChemPhotoChem, 2023. т.Vol. 7,N Is. 9.- Ст.e202300100
18.

Decoration of carbon nanomaterial powders with dispersed platinum metal particles/V. G. Isakova [et al.] // Russian Journal of Applied Chemistry, 2018. т.Vol. 91,N Is. 7.-С.1209-1216
19.

DFT investigation of the influence of ordered vacancies on elastic and magnetic properties of graphene and graphene-like SiC and BN structures/A. S. Fedorov [et al.] // Physica status solidi B - Basic Solid State Physics, 2012. т.Vol. 249,N Is. 12.-С.2549-2552
20.

DSC and Raman study of phase transitions in diphenylalanine nanotubes/P. Zelenovskiy [и др.] // The 8th International Conference on Advanced Vibrational Spectroscopy at TU Wien, 2015.-С.54
 

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