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This article is cited in 1 scientific paper (total in 1 paper)
PHYSICS
Classical density functional approach to adsorption of hydrogen in carbon materials
V. V. Zubkov, V. M. Samsonov, I. V. Grinev, I. V. Popov Tver State University, Tver, Russia
Abstract:
The adsorption of hydrogen in carbon adsorbents was investigated at low and high temperatures (20.33, 77, 200 and 300 K) over a wide range of pressures using the classical density functional theory. The adsorbent was simulated by a slit-like pore presented by the gap between two monocarbon (graphene) walls. In most cases, our results demonstrate a good agreement with the available experimental and theoretical results of other authors. A conclusion was made that, contrary to the low temperature region ( T < 100 K), at high temperatures (200 and 300 K), predicted values for the adsorption and of the gravimetric density of hydrogen are not sufficient for the practical design of a hydrogen accumulator.
Keywords:
adsorption, hydrogen, carbon adsorbents, density functional theory.
Received: 06.04.2015 Revised: 21.04.2015
Citation:
V. V. Zubkov, V. M. Samsonov, I. V. Grinev, I. V. Popov, “Classical density functional approach to adsorption of hydrogen in carbon materials”, Nanosystems: Physics, Chemistry, Mathematics, 6:3 (2015), 394–404
Linking options:
https://www.mathnet.ru/eng/nano953 https://www.mathnet.ru/eng/nano/v6/i3/p394
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