Advances in Materials Physics and Chemistry

Advances in Materials Physics and Chemistry

ISSN Print: 2162-531X
ISSN Online: 2162-5328
www.scirp.org/journal/ampc
E-mail: ampc@scirp.org
"Thermodynamic Aspects of the Graphene/Graphane/Hydrogen Systems: Relevance to the Hydrogen On-Board Storage Problem"
written by Yury S. Nechaev, T. Nejat Veziroglu,
published by Advances in Materials Physics and Chemistry, Vol.3 No.5, 2013
has been cited by the following article(s):
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[2] Melting process of fluorinated graphene: A molecular dynamics study
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[3] Graphene and Graphene-Like Materials for Hydrogen Energy
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[4] Direct synthesis of hydrogenated graphene via hydrocarbon decomposition in plasmas
2019
[5] Orders of magnitude reduction in the thermal conductivity of polycrystalline diamond through carbon, nitrogen, and oxygen ion implantation
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[6] Study of Three-Dimensional, Surface, and Linear Structures of Allotropic Carbon: Diffraction Spectra of Auger Electron Energy Losses
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[7] Изучение объемных, поверхностных и одномерных структур аллотропного углерода по дифракционным спектрам потерь энергии оже‑электронов
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[8] Theoretical prediction of the energy stability of graphene nanoblisters
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[9] High-Density Hydrogen Storage in a 2D-Matrix from Graphene Nanoblisters: A Prospective Nanomaterial for Environmentally Friendly Technologies
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[10] Passivation of hydrogen damage using graphene coating on α-Fe2O3 films
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[11] A DFT Study on the Transportation of Charge Carriers in Graphene Systems
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[12] Transformation of amorphous to crystallized carbon
AIP Conference Proceedings, 2017
[13] Thermo-mechanical behavior of graphene oxide hydrogel
Materials Research Express, 2017
[14] Вплив дефектів заміщення на електронну структуру епітаксіального графену
2017
[15] Теоретический анализ возможностей спектроскопии потерь энергии электронов для изучения наноразмерных атомных структур аллотропного углерода
2016
[16] Deformation of graphene layers and phase transformations in the hydrogen nanophase intercalated in them
Russian Metallurgy (Metally), 2016
[17] Temperature dependent compressive behavior of graphene mediated three-dimensional cellular assembly
Carbon, 2016
[18] On the spillover effect of the solid H^ sub 2^ intercalation into GNF's
Nanosystems: Physics, Chemistry, Mathematics, 2016
[19] On the spillover effect of the solid H2 intercalation into GNF's
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[20] ТЕОРЕТИЧЕСКОЕ ПРОГНОЗИРОВАНИЕ ЭНЕРГЕТИЧЕСКОЙ СТАБИЛЬНОСТИ ГРАФЕНОВЫХ НАНОБЛИСТЕРОВ
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[21] О деформации графеновых слоев и фазовых изменениях интеркалированной в них водородной нанофазы
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[22] The Reversible Hydrogenation-Dehydrogenation of Membrane and Epitaxial Graphenes
Journal of Chemical Engineering and Chemistry Research, 2015
[23] On the hydrogenation-dehydrogenation of graphene-layer-nanostructures: Relevance to the hydrogen on-board storage problem
International Journal of Physical Sciences, 2015
[24] Термодинамические характеристики и атомные механизмы гидрирования-дегидрирования графеновых структур
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[25] On the H 2 nanophase intercalation into graphene-layers structures: relevance to the spillover effect
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[26] Thermodynamic characteristics and atomic mechanisms of hydrogenation-dehydrogenation of graphene structures
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[27] Graphene coating as a protective barrier against hydrogen embrittlement
International Journal of Hydrogen Energy, Elsevier, 2014
[28] Fundamental Open Questions on Engineering of" Super" Hydrogen Sorption in Graphite Nanofibers: Relevance for Clean Energy Applications
American Journal of Analytical Chemistry, 2014
[29] On some theoretical and experimental (STM, STS, HREELS/LEED, PES, ARPS & Raman spectroscopy) data on hydrogen sorption with graphene-layers nanomaterials, relevance to the clean energy applications
Международный научный журнал Альтернативная энергетика и экология, 2014
[30] ON GRAPHENE WALLS'DEFORMATION & HYDROGEN PHASE CHANGES IN HYDROGENATED GRAPHITE NANOFIBERS (GNFs)
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