Vacancy transport properties in boron-carbon BC_3 nanotubes

In this article results of computer modeling of processes of ionic conductivity of boron-carbon nanotubes (6,0) of BC_ n type, where n = 3 are presented. Two types of a relative positioning of boron and carbon atoms are considered. The research was performed using the MNDO method within the framewor...

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Main Authors: I.V. Zaporotskova, S.V. Boroznin, E.V. Boroznina, D.I. Polikarpov, A.A. Krutoyarov
Format: Article
Language:English
Published: Povolzhskiy State University of Telecommunications & Informatics 2013-02-01
Series:Физика волновых процессов и радиотехнические системы
Subjects:
Online Access:https://journals.ssau.ru/pwp/article/viewFile/7361/7220
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author I.V. Zaporotskova
S.V. Boroznin
E.V. Boroznina
D.I. Polikarpov
A.A. Krutoyarov
author_facet I.V. Zaporotskova
S.V. Boroznin
E.V. Boroznina
D.I. Polikarpov
A.A. Krutoyarov
author_sort I.V. Zaporotskova
collection DOAJ
description In this article results of computer modeling of processes of ionic conductivity of boron-carbon nanotubes (6,0) of BC_ n type, where n = 3 are presented. Two types of a relative positioning of boron and carbon atoms are considered. The research was performed using the MNDO method within the framework of a molecular cluster model. For investigation of ionic conductivity process the vacancy formation has been modeled. Energetic and electronic characteristics of these processes have been carried out. The vacancy migration process has been modeled. The conductivity coefficient dependence of temperature has been found.
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2782-294X
language English
last_indexed 2024-03-08T21:08:49Z
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series Физика волновых процессов и радиотехнические системы
spelling doaj.art-c6142c51f0f9448e81667b362aaab0662023-12-22T10:31:37ZengPovolzhskiy State University of Telecommunications & InformaticsФизика волновых процессов и радиотехнические системы1810-31892782-294X2013-02-0116214186929Vacancy transport properties in boron-carbon BC_3 nanotubesI.V. Zaporotskova0S.V. Boroznin1E.V. Boroznina2D.I. Polikarpov3A.A. Krutoyarov4Волгоградский государственный университетВолгоградский государственный университетВолгоградский государственный университетВолгоградский государственный университетВолгоградский государственный университетIn this article results of computer modeling of processes of ionic conductivity of boron-carbon nanotubes (6,0) of BC_ n type, where n = 3 are presented. Two types of a relative positioning of boron and carbon atoms are considered. The research was performed using the MNDO method within the framework of a molecular cluster model. For investigation of ionic conductivity process the vacancy formation has been modeled. Energetic and electronic characteristics of these processes have been carried out. The vacancy migration process has been modeled. The conductivity coefficient dependence of temperature has been found.https://journals.ssau.ru/pwp/article/viewFile/7361/7220boron-carbon nanotubesvacancyv-defecttransport propertiesionic conductivityactivation energyvacancy migrationsemi-empirical methods of investigation
spellingShingle I.V. Zaporotskova
S.V. Boroznin
E.V. Boroznina
D.I. Polikarpov
A.A. Krutoyarov
Vacancy transport properties in boron-carbon BC_3 nanotubes
Физика волновых процессов и радиотехнические системы
boron-carbon nanotubes
vacancy
v-defect
transport properties
ionic conductivity
activation energy
vacancy migration
semi-empirical methods of investigation
title Vacancy transport properties in boron-carbon BC_3 nanotubes
title_full Vacancy transport properties in boron-carbon BC_3 nanotubes
title_fullStr Vacancy transport properties in boron-carbon BC_3 nanotubes
title_full_unstemmed Vacancy transport properties in boron-carbon BC_3 nanotubes
title_short Vacancy transport properties in boron-carbon BC_3 nanotubes
title_sort vacancy transport properties in boron carbon bc 3 nanotubes
topic boron-carbon nanotubes
vacancy
v-defect
transport properties
ionic conductivity
activation energy
vacancy migration
semi-empirical methods of investigation
url https://journals.ssau.ru/pwp/article/viewFile/7361/7220
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AT svboroznin vacancytransportpropertiesinboroncarbonbc3nanotubes
AT evboroznina vacancytransportpropertiesinboroncarbonbc3nanotubes
AT dipolikarpov vacancytransportpropertiesinboroncarbonbc3nanotubes
AT aakrutoyarov vacancytransportpropertiesinboroncarbonbc3nanotubes