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碱金属诱导的C60富勒烯中氢吸附增强:一项从头算研究。

Alkali-metal-induced enhancement of hydrogen adsorption in C60 fullerene: an ab Initio study.

作者信息

Chandrakumar K R S, Ghosh Swapan K

机构信息

Theoretical Chemistry Section, Chemistry Group, Bhabha Atomic Research Centre, Mumbai 400 085, India.

出版信息

Nano Lett. 2008 Jan;8(1):13-9. doi: 10.1021/nl071456i. Epub 2007 Dec 18.

Abstract

It is demonstrated that the doping of alkali metal atoms on fullerene, C60, remarkably enhances the molecular hydrogen adsorption capacity of fullerenes, which is higher than that of conventionally known other fullerene complexes. This effect is observed to be more pronounced for sodium than lithium atom. The formation of stable complex forms of a sodium-doped fullerene molecule, Na8C60, and the corresponding hydrogenated species, [Na(H2)6]8C60, with 48 hydrogen molecules has been demonstrated to lead to a hydrogen adsorption density of approximately 9.5 wt %. One of the main factors favoring the interactions involved is attributed to the pronounced charge transfer from the sodium atom to the C60 molecule and electrostatic interaction between the ion and the dihydrogen. The suitability of these complexes for developing fullerene-based hydrogen storage materials is discussed.

摘要

结果表明,碱金属原子掺杂在富勒烯C60上可显著提高富勒烯对分子氢的吸附能力,该能力高于其他传统已知的富勒烯配合物。观察到钠原子的这种效应比锂原子更明显。已证明,钠掺杂富勒烯分子Na8C60与相应的氢化物种[Na(H2)6]8C60(含有48个氢分子)形成稳定的配合物形式,导致氢吸附密度约为9.5 wt%。有利于所涉及相互作用的主要因素之一归因于从钠原子到C60分子的明显电荷转移以及离子与氢气之间的静电相互作用。讨论了这些配合物在开发基于富勒烯的储氢材料方面的适用性。

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