Graphenic C$_3$N$_4$: A New Template for Metal Decoration and Hydrogen Adsorption
ORAL
Abstract
From density functional theory calculations we identify a graphenic C$_3$N$_4$ (g-C$_3$N$_4$) structure as an excellent template for stable and well dispersed decoration of alkali and transition metal atoms which, in turn, exhibits a high capacity for hydrogen adsorption with binding energies (a few tenths of eV) suitable for mobile applications. The unique porous micro-structural sites of g- C$_3$N$_4$ accommodate the excessive N lone-pair electrons and promote strong hybridization between the orbitals of N and metal atoms. It plays a key role in overcoming the tendency of metal-atom clustering that has plagued other proposed hydrogen storage media. These metal decorated g- C$_3$N$_4$ may also prove useful in a variety of catalytic and sensing applications.
*This work was supported by the DOE Coopera-tive Agreement DE-FG36-05GO085028 and DE-FC52-06NA26274 at UNLV and by the NSFC grants No.10574089 and No. 50532020 at SJTU.
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