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基于密度泛函理论计算对氮、碳构型对铁-氮掺杂石墨烯催化剂氧还原反应性能影响的系统探索。

Systematic exploration of N, C configurational effects on the ORR performance of Fe-N doped graphene catalysts based on DFT calculations.

作者信息

Liu Fan, Zhu Guangqi, Yang Dongzi, Jia Dong, Jin Fengmin, Wang Wei

机构信息

School of Chemical Engineering and Technology, Tianjin University Tianjin 300072 China

Key Laboratory of Metal Fuel Cell of Sichuan Province China.

出版信息

RSC Adv. 2019 Jul 23;9(39):22656-22667. doi: 10.1039/c9ra02822f. eCollection 2019 Jul 17.

Abstract

Metal single-atom catalysts (MSATs), such as Fe-N coordination doped sp-carbon matrices, have emerged as a promising oxygen reduction reaction (ORR) catalyst to replace their costly platinum (Pt) based counterparts in fuel cells. In this work, we employ density functional theory (DFT) to systematically discuss the electronic-structure and surface-stress effects of N, C configurations on Fe-N doped graphene in single and double vacancy. The formation energy ( ) of Fe-N-gra dropped off with the increase of N atoms incorporated for both single and double vacancy groups. The theoretical overpotentials on Fe-N-C sites were calculated and revealed that moderate N-doping levels and doping configuration could enhance the ORR activity of Fe-N coordination structures in the double vacancy and that doping N atoms is not effective for ORR activity in single vacancy. By exploring the d-band centers, we found that ligand effects and surface tension effects contribute to the modification of the d-band centers of metal Fe atoms. An optimum Fe-N-C ORR catalyst should exhibit moderate surface stress properties and an ideal N, C ligand configuration. This study provides new insight into the effects of N atom doping in Fe-N-gra catalysts and could help guide the rational design of high-performance carbon-based ORR electrocatalysts.

摘要

金属单原子催化剂(MSATs),如Fe-N配位掺杂的sp-碳基体,已成为一种有前景的氧还原反应(ORR)催化剂,有望在燃料电池中取代成本高昂的铂(Pt)基催化剂。在本工作中,我们采用密度泛函理论(DFT)系统地讨论了单空位和双空位中N、C构型对Fe-N掺杂石墨烯的电子结构和表面应力效应。对于单空位和双空位组,Fe-N-石墨烯的形成能( )均随着掺入N原子数量的增加而降低。计算了Fe-N-C位点的理论过电位,结果表明适度的N掺杂水平和掺杂构型可增强双空位中Fe-N配位结构的ORR活性,而在单空位中掺杂N原子对ORR活性无效。通过探索d带中心,我们发现配体效应和表面张力效应有助于改变金属Fe原子的d带中心。最佳的Fe-N-C ORR催化剂应具有适度的表面应力性质和理想的N、C配体构型。本研究为Fe-N-石墨烯催化剂中N原子掺杂的效应提供了新的见解,并有助于指导高性能碳基ORR电催化剂的合理设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b56/9067023/cecc5404e581/c9ra02822f-f1.jpg

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