Journal Article10.1016/J.JPCS.2011.10.035
First-principles study of high-capacity hydrogen storage on graphene with Li atoms
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TL;DR: In this paper, a detailed study for hydrogen storage on graphene with Li atoms has been carried out using the first-principles calculations based on density functional theory, which indicated that hydrogen storage capacity can be increased by adjusting the coverage of Li atoms on graphene to the ( 3 × 3 ) pattern at both sides.
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About: This article is published in Journal of Physics and Chemistry of Solids. The article was published on 01 Feb 2012. The article focuses on the topics: Hydrogen storage & Hydrogen.
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Citations
Cyclosarin nerve agent interaction with the pristine, Stone Wales defected, and Si-doped BN nanosheets: Theoretical study
TL;DR: In this article, the reactivity and electronic sensitivity of pristine, Stone Wales defected, and Si-doped BN (Si-BN) nanosheets toward cyclosarin nerve agent were investigated.
Carbon-based nanomaterials for hydrogen production and storage applications
R. Kumar,P. Suresh Kumar,Anish Khan,Abdullah M. Asiri,Hurija Dzudzevic-Cancar +4 more
- 01 Jan 2021
TL;DR: In this paper, the absorption of hydrogen by pristine carbon-based nanomaterials is improved through various methods such as metal decoration, introducing defects, substitution doping, and producing complex hybrid material.
Theoretical investigation of the use of nanocages with an adsorbed halogen atom as anode materials in metal-ion batteries
Razieh Razavi,Seyyed Milad Abrishamifar,Gholamreza Ebrahimzadeh Rajaei,Mohammad Reza Rezaei Kahkha,Meysam Najafi +4 more
TL;DR: It is concluded that a K-ion battery that utilized Al21P22 with an adsorbed F atom as its anode material would afford the best metal-ions battery performance; this is proposed as a novel highly efficient metal-ion batteries.
Possibility of C38 and Si19Ge19 Nanocages in Anode of Metal Ion Batteries: Computational Examination.
TL;DR: It can be concluded that F-doped Si18Ge19 as anode electrode in K-ion battery has the highest performance and it can be proposed as novel metal-ion batteries with high performance.
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