石墨烯
电化学
密度泛函理论
催化作用
过渡金属
纳米技术
材料科学
缩放比例
化学物理
电催化剂
碳纤维
合理化(经济学)
吸附
化学
计算化学
电极
物理化学
复合数
有机化学
数学
几何学
哲学
复合材料
认识论
作者
Samira Siahrostami,Kun Jiang,Mohammadreza Karamad,Karen Chan,Haotian Wang,Jens K. Nørskov
标识
DOI:10.1021/acssuschemeng.7b03031
摘要
Despite numerous experimental efforts that have been dedicated to studying carbon-based materials for electrochemical reduction of CO2, a rationalization of the associated trends in the intrinsic activity of different active motifs has so far been elusive. In the present work, we employ density functional theory calculations to examine a variety of different active sites in N-doped graphene to give a comprehensive outline of the trends in activity. We find that adsorption energies of COOH* and CO* do not follow the linear scaling relationships observed for the pure transition metals, and this unique scaling is rationalized through differences in electronic structure between transition metals and defected graphene. This finding rationalizes most of the experimental observations on the carbon-based materials which present promising catalysts for the two-electron reduction of CO2 to CO. With this simple thermodynamic analysis, we identify several active sites that are expected to exhibit a comparable or even better activity to the state-of-the-art gold catalyst, and several configurations are suggested to be selective for CO2RR over HER.
科研通智能强力驱动
Strongly Powered by AbleSci AI