首页 | 本学科首页   官方微博 | 高级检索  
   检索      


Rational Design of Graphene‐Supported Single Atom Catalysts for Hydrogen Evolution Reaction
Authors:Md Delowar Hossain  Zhenjing Liu  Minghao Zhuang  Xingxu Yan  Gui‐Liang Xu  Chaitanya Avinash Gadre  Abhishek Tyagi  Irfan Haider Abidi  Cheng‐Jun Sun  Hoilun Wong  Alexander Guda  Yufeng Hao  Xiaoqing Pan  Khalil Amine  Zhengtang Luo
Abstract:The proper choice of nonprecious transition metals as single atom catalysts (SACs) remains unclear for designing highly efficient electrocatalysts for hydrogen evolution reaction (HER). Herein, reported is an activity correlation with catalysts, electronic structure, in order to clarify the origin of reactivity for a series of transition metals supported on nitrogen‐doped graphene as SACs for HER by a combination of density functional theory calculations and electrochemical measurements. Only few of the transition metals (e.g., Co, Cr, Fe, Rh, and V) as SACs show good catalytic activity toward HER as their Gibbs free energies are varied between the range of –0.20 to 0.30 eV but among which Co‐SAC exhibits the highest electrochemical activity at 0.13 eV. Electronic structure studies show that the energy states of active valence dz2 orbitals and their resulting antibonding state determine the catalytic activity for HER. The fact that the antibonding state orbital is neither completely empty nor fully filled in the case of Co‐SAC is the main reason for its ideal hydrogen adsorption energy. Moreover, the electrochemical measurement shows that Co‐SAC exhibits a superior hydrogen evolution activity over Ni‐SAC and W‐SAC, confirming the theoretical calculation. This systematic study gives a fundamental understanding about the design of highly efficient SACs for HER.
Keywords:charge transfer  density functional theory  density of states  hydrogen evolution reaction  single atom catalysts
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号