The features of molecular electrostatic potentialdistribution in single-wall and double-wallcarbon nanotubes (6,0), (15,0) and (6,0) @ (15,0)

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Bibliographic Details
Date:2014
Main Author: A. M. Datsiuk
Format: Article
Language:English
Published: 2014
Series:Surface
Online Access:http://jnas.nbuv.gov.ua/article/UJRN-0000516599
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Journal Title:Library portal of National Academy of Sciences of Ukraine | LibNAS

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Library portal of National Academy of Sciences of Ukraine | LibNAS
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author A. M. Datsiuk
author_facet A. M. Datsiuk
author_sort A. M. Datsiuk
collection Open-Science
first_indexed 2025-07-22T07:46:40Z
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institution Library portal of National Academy of Sciences of Ukraine | LibNAS
language English
last_indexed 2025-07-22T07:46:40Z
publishDate 2014
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spelling open-sciencenbuvgovua-757122024-04-16T17:29:25Z The features of molecular electrostatic potentialdistribution in single-wall and double-wallcarbon nanotubes (6,0), (15,0) and (6,0) @ (15,0) A. M. Datsiuk 2617-5975 2014 en Surface http://jnas.nbuv.gov.ua/article/UJRN-0000516599 Article
spellingShingle Surface
A. M. Datsiuk
The features of molecular electrostatic potentialdistribution in single-wall and double-wallcarbon nanotubes (6,0), (15,0) and (6,0) @ (15,0)
title The features of molecular electrostatic potentialdistribution in single-wall and double-wallcarbon nanotubes (6,0), (15,0) and (6,0) @ (15,0)
title_full The features of molecular electrostatic potentialdistribution in single-wall and double-wallcarbon nanotubes (6,0), (15,0) and (6,0) @ (15,0)
title_fullStr The features of molecular electrostatic potentialdistribution in single-wall and double-wallcarbon nanotubes (6,0), (15,0) and (6,0) @ (15,0)
title_full_unstemmed The features of molecular electrostatic potentialdistribution in single-wall and double-wallcarbon nanotubes (6,0), (15,0) and (6,0) @ (15,0)
title_short The features of molecular electrostatic potentialdistribution in single-wall and double-wallcarbon nanotubes (6,0), (15,0) and (6,0) @ (15,0)
title_sort features of molecular electrostatic potentialdistribution in single-wall and double-wallcarbon nanotubes (6,0), (15,0) and (6,0) @ (15,0)
url http://jnas.nbuv.gov.ua/article/UJRN-0000516599
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