Sorption of ⁴He, H₂, Ne, N₂, CH₄, and Kr impurities in graphene oxide at low temperatures. Quantum effects

Sorption and the subsequent desorption of ⁴He, H₂, Ne, N₂, CH₄, and Kr gas impurities by graphene oxide(GO), glucose-reduced GO (RGO-Gl) and hydrazine-reduced GO (RGO-Hz) powders have been investigated in the temperature interval 2–290 K. It has been found that the sorptive capacity of the reduced s...

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Дата:2013
Автори: Dolbin, A.V., Esel'son, V.B., Gavrilko, V.G., Manzhelii, V.G., Vinnikov, N.A., Basnukaeva, R.M., Danchuk, V.V., Mysko, N.S., Bulakh, E.V., Maser, W.K., Benito, A.M.
Формат: Стаття
Мова:English
Опубліковано: Фізико-технічний інститут низьких температур ім. Б.І. Вєркіна НАН України 2013
Назва видання:Физика низких температур
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Онлайн доступ:http://dspace.nbuv.gov.ua/handle/123456789/118925
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Назва журналу:Digital Library of Periodicals of National Academy of Sciences of Ukraine
Цитувати:Sorption of ⁴He, H₂, Ne, N₂, CH₄, and Kr impurities in graphene oxide at low temperatures. Quantum effects / A.V. Dolbin, V.B. Esel'son, V.G. Gavrilko, V.G. Manzhelii , N.A. Vinnikov, R.M. Basnukaeva, V.V. Danchuk, N.S. Mysko, E.V. Bulakh, W.K. Maser, A.M. Benito // Физика низких температур. — 2013. — Т. 39, № 12. — С. 1397–1404. — Бібліогр.: 48 назв. — англ.

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Digital Library of Periodicals of National Academy of Sciences of Ukraine
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spelling irk-123456789-1189252017-06-02T03:04:12Z Sorption of ⁴He, H₂, Ne, N₂, CH₄, and Kr impurities in graphene oxide at low temperatures. Quantum effects Dolbin, A.V. Esel'son, V.B. Gavrilko, V.G. Manzhelii, V.G. Vinnikov, N.A. Basnukaeva, R.M. Danchuk, V.V. Mysko, N.S. Bulakh, E.V. Maser, W.K. Benito, A.M. Наноструктуры при низких температурах Sorption and the subsequent desorption of ⁴He, H₂, Ne, N₂, CH₄, and Kr gas impurities by graphene oxide(GO), glucose-reduced GO (RGO-Gl) and hydrazine-reduced GO (RGO-Hz) powders have been investigated in the temperature interval 2–290 K. It has been found that the sorptive capacity of the reduced sample RGO-Hz is three to six times higher than that of GO. The reduction of GO with glucose has only a slight effect on its sorptive properties. The temperature dependences of the diffusion coefficients of the GO, RGO-Gl and RGO-Hz samples have been obtained using the measured characteristic times of sorption. It is assumed that the temperature dependences of the diffusion coefficients are determined by the competition of the thermally activated and tunneling mechanisms, the tunneling contribution being dominant at low temperatures. 2013 Article Sorption of ⁴He, H₂, Ne, N₂, CH₄, and Kr impurities in graphene oxide at low temperatures. Quantum effects / A.V. Dolbin, V.B. Esel'son, V.G. Gavrilko, V.G. Manzhelii , N.A. Vinnikov, R.M. Basnukaeva, V.V. Danchuk, N.S. Mysko, E.V. Bulakh, W.K. Maser, A.M. Benito // Физика низких температур. — 2013. — Т. 39, № 12. — С. 1397–1404. — Бібліогр.: 48 назв. — англ. 0132-6414 PACS: 68.43.Jk, 68.43.Mn http://dspace.nbuv.gov.ua/handle/123456789/118925 en Физика низких температур Фізико-технічний інститут низьких температур ім. Б.І. Вєркіна НАН України
institution Digital Library of Periodicals of National Academy of Sciences of Ukraine
collection DSpace DC
language English
topic Наноструктуры при низких температурах
Наноструктуры при низких температурах
spellingShingle Наноструктуры при низких температурах
Наноструктуры при низких температурах
Dolbin, A.V.
Esel'son, V.B.
Gavrilko, V.G.
Manzhelii, V.G.
Vinnikov, N.A.
Basnukaeva, R.M.
Danchuk, V.V.
Mysko, N.S.
Bulakh, E.V.
Maser, W.K.
Benito, A.M.
Sorption of ⁴He, H₂, Ne, N₂, CH₄, and Kr impurities in graphene oxide at low temperatures. Quantum effects
Физика низких температур
description Sorption and the subsequent desorption of ⁴He, H₂, Ne, N₂, CH₄, and Kr gas impurities by graphene oxide(GO), glucose-reduced GO (RGO-Gl) and hydrazine-reduced GO (RGO-Hz) powders have been investigated in the temperature interval 2–290 K. It has been found that the sorptive capacity of the reduced sample RGO-Hz is three to six times higher than that of GO. The reduction of GO with glucose has only a slight effect on its sorptive properties. The temperature dependences of the diffusion coefficients of the GO, RGO-Gl and RGO-Hz samples have been obtained using the measured characteristic times of sorption. It is assumed that the temperature dependences of the diffusion coefficients are determined by the competition of the thermally activated and tunneling mechanisms, the tunneling contribution being dominant at low temperatures.
format Article
author Dolbin, A.V.
Esel'son, V.B.
Gavrilko, V.G.
Manzhelii, V.G.
Vinnikov, N.A.
Basnukaeva, R.M.
Danchuk, V.V.
Mysko, N.S.
Bulakh, E.V.
Maser, W.K.
Benito, A.M.
author_facet Dolbin, A.V.
Esel'son, V.B.
Gavrilko, V.G.
Manzhelii, V.G.
Vinnikov, N.A.
Basnukaeva, R.M.
Danchuk, V.V.
Mysko, N.S.
Bulakh, E.V.
Maser, W.K.
Benito, A.M.
author_sort Dolbin, A.V.
title Sorption of ⁴He, H₂, Ne, N₂, CH₄, and Kr impurities in graphene oxide at low temperatures. Quantum effects
title_short Sorption of ⁴He, H₂, Ne, N₂, CH₄, and Kr impurities in graphene oxide at low temperatures. Quantum effects
title_full Sorption of ⁴He, H₂, Ne, N₂, CH₄, and Kr impurities in graphene oxide at low temperatures. Quantum effects
title_fullStr Sorption of ⁴He, H₂, Ne, N₂, CH₄, and Kr impurities in graphene oxide at low temperatures. Quantum effects
title_full_unstemmed Sorption of ⁴He, H₂, Ne, N₂, CH₄, and Kr impurities in graphene oxide at low temperatures. Quantum effects
title_sort sorption of ⁴he, h₂, ne, n₂, ch₄, and kr impurities in graphene oxide at low temperatures. quantum effects
publisher Фізико-технічний інститут низьких температур ім. Б.І. Вєркіна НАН України
publishDate 2013
topic_facet Наноструктуры при низких температурах
url http://dspace.nbuv.gov.ua/handle/123456789/118925
citation_txt Sorption of ⁴He, H₂, Ne, N₂, CH₄, and Kr impurities in graphene oxide at low temperatures. Quantum effects / A.V. Dolbin, V.B. Esel'son, V.G. Gavrilko, V.G. Manzhelii , N.A. Vinnikov, R.M. Basnukaeva, V.V. Danchuk, N.S. Mysko, E.V. Bulakh, W.K. Maser, A.M. Benito // Физика низких температур. — 2013. — Т. 39, № 12. — С. 1397–1404. — Бібліогр.: 48 назв. — англ.
series Физика низких температур
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first_indexed 2023-10-18T20:33:20Z
last_indexed 2023-10-18T20:33:20Z
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