Hydrogen adsorption on Li metal in boron substituted graphene: Ab initio approach

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초록

The characteristics of hydrogen adsorption on Li metal atoms dispersed on graphene with boron substitution were investigated for Li clustering, hydrogen bonding characteristics and open metal states of Li adatom by using density functional theory calculations. It is found that Li atoms are well dispersed on boron substituted graphene and can form the (2 × 2) pattern because clustering of Li atoms is hindered by repulsive Coulomb interaction between Li atoms. One Li adatom dispersed on the double side of graphene can absorb up to 8 hydrogen molecules corresponding to 13.2% hydrogen storage capacity. In addition, adsorption behaviors of non-hydrogen atoms such as C, B, and O2 are calculated to find whether Li atom can be remained as open metal state in boron substituted graphene.

키워드

Ab initio approachAdsorption behaviorDensity functional theory calculationsHydrogen adsorptionHydrogen bondingsHydrogen moleculeHydrogen storage capacitiesLi atomsLi metalMetal stateNon-hydrogen atomsWell-dispersedAdatomsBoronBoron compoundsDensity functional theoryGas adsorptionGrapheneGraphiteHydrogenHydrogen bondsHydrogen storageMetalsNanoelectronicsAtoms
제목
Hydrogen adsorption on Li metal in boron substituted graphene: Ab initio approach
저자
Park, Hong-LaeChung, Yong-Chae
DOI
10.1109/INEC.2010.5425125
발행일
2010-03
유형
Conference Paper
저널명
INEC 2010 - 2010 3rd International Nanoelectronics Conference, Proceedings
페이지
917 ~ 918