Effect of nitrogen induced defects in Li dispersed graphene on hydrogen storage

Citations

WEB OF SCIENCE

67
Citations

SCOPUS

71

초록

As a candidate for hydrogen storage medium, Li decorated graphene with experimentally realizable nitrogen defects was investigated for geometric stability and hydrogen capacity using density functional theory (DFT) calculations. Among the three types of defective structures, it is expected that Li metal atoms are well dispersed on the graphene sheets with pyridinic and pyrrolic defects without clustering as the bond strength of Li on pyridinic and pyrrolic N-doped graphene layers is higher than the cohesive energy of the Li metal bulk. The two stable structures were found to exhibit hydrogen uptake ability up to three H-2 per Li atom. The binding energies of the hydrogen molecules for these structures were in the range of 0.12-0.20 eV/H-2. These results demonstrate that a Li/N-doped graphene system could be used as a hydrogen storage material.

키워드

Hydrogen storageN-doped grapheneDensity functional theoryAb initioBORON-SUBSTITUTED GRAPHENECARBONMETAL1ST-PRINCIPLESADSORPTIONCAPACITYFUTURE
제목
Effect of nitrogen induced defects in Li dispersed graphene on hydrogen storage
저자
Lee, SanghoLee, MinhoChoi, HeechaeYoo, Dong SuChung, Yong-Chae
DOI
10.1016/j.ijhydene.2013.01.180
발행일
2013-04
유형
Article
저널명
International Journal of Hydrogen Energy
38
11
페이지
4611 ~ 4617