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Общее количество найденных документов : 45
Показаны документы с 1 по 20
1.

Fedorov A. S. Optimization of the calculations of the electronic structure of carbon nanotubes/A. S. Fedorov, P. B. Sorokin // PHYSICS OF THE SOLID STATE:AMER INST PHYSICS, 2005. т.Vol. 47,N Is. 11.-С.2196-2202
2.

Metal-semiconductor (semimetal) superlattices on a graphite sheet with vacancies/L. A. Chernozatonskii [et al.] // JETP Letters, 2006. т.Vol. 84,N Is. 3.-С.115-118
3.

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
4.

Fedorov A. S. Density and thermodynamics of hydrogen adsorbed on the surface of single-walled carbon nanotubes/A. S. Fedorov, P. B. Sorokin // PHYSICS OF THE SOLID STATE:MAIK NAUKA/INTERPERIODICA/SPRINGER, 2006. т.Vol. 48,N Is. 2.-С.402-407
5.

Sorokin P. B. Structure and properties of BeO nanotubes/P. B. Sorokin, A. S. Fedorov, L. A. Chernozatonskii // PHYSICS OF THE SOLID STATE:SPRINGER, 2006. т.Vol. 48,N Is. 2.-С.398-401
6.

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
7.

Superlattices consisting of "lines" of adsorbed hydrogen atom pairs on graphene/L. A. Chernozatonskii [et al.] // JETP Letters, 2007. т.Vol. 85,N Is. 1.-С.77-81
8.

Theoretical study and experimental investigation of hydrogen absorption by carbon nanomaterials/G. N. Churilov [et al.] // NATO Science for Peace and Security Series A: Chemistry and Biology, 2007. т.Т. 2007,N № .-С.127-132
9.

Density-functional theory study of the electronic structure of thin Si/SiO2 quantum nanodots and nanowires/P. V. Avramov [et al.] // PHYSICAL REVIEW B:AMERICAN PHYSICAL SOC, 2007. т.Vol. 75,N Is. 20.- Ст.205427
10.

Multiterminal nanowire junctions of silicon: A theoretical prediction of atomic structure and electronic properties/P. V. Avramov [et al.] // Nano Letters:American Chemical Society, 2007. т.Т. 7,N № 7.-С.2063-2067
11.

Chernozatonskii L. A. Two-dimensional semiconducting nanostructures based on single graphene sheets with lines of adsorbed hydrogen atoms/L. A. Chernozatonskii, P. B. Sorokin, J. W. Bruning // Applied Physics Letters, 2007. т.Vol. 91,N Is. 18.- Ст.183103
12.

New symmetric families of silicon quantum dots and their conglomerates as a tunable source of photoluminescence in nanodevices/Avramov P.V., Fedorov D.G., Sorokin P.B., Chernozatonskii L.A., Gordon M.S. // arXiv:Cornell University, 2008.- Ст.0709.2279v1
13.

Ab-initio study of hydrogen chemical adsorption on the platinum surface/carbon nanotube join system/A. S. Fedorov, P. B. Sorokin, A. A. Kuzubov // Physica status solidi B - Basic Solid State Physics, 2008. т.Vol. 245,N № 8.-С.1546-1551
14.

Atypical quantum confinement effect in silicon nanowires/P. B. Sorokin [et al.] // JOURNAL OF PHYSICAL CHEMISTRY A. -WASHINGTON:AMER CHEMICAL SOC, 2008. т.Vol. 112,N Is. 40.-С.9955-9964
15.

Quantum dots embedded into silicon nanowires effectively partition electron confinement/P. V. Avramov, P. B. Sorokin [et al.] // J. Appl. Physics, 2008. т.Vol. 104.-С.054305(6)
16.

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
17.

Density functional study of < 110 >-oriented thin silicon nanowires/P. B. Sorokin [et al.] // PHYSICAL REVIEW B:AMER PHYSICAL SOC, 2008. т.Vol. 77,N Is. 23.- Ст.235417
18.

Fedorov A. S. Ab initio study of hydrogen chemical adsorption on platinum surface/carbon nanotube join system/A. S. Fedorov, P. B. Sorokin, A. A. Kuzubov // Physica Status Solidi B - Basic Solid State Physics, 2008. т.Vol. 245,N Is. 8.-С.1546-1551
19.

Chernozatonskii L. A. Electronic superlattices and waveguides based on graphene: structures, properties and applications/L. A. Chernozatonskii, P. B. Sorokin // , 2008. т.Vol. 245,N Is. 10.-С.2086-2089
20.

Quantum dots embedded into silicon nanowires effectively partition electron confinement/P. V. Avramov [et al.] // JOURNAL OF APPLIED PHYSICS:AMER INST PHYSICS, 2008. т.Vol. 104,N Is. 5.- Ст.54305
 

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