Zhang Jingjing, Wan Kechuang, Ming Ping Wen, Li Bing, Zhang Cunman
Clean Energy Automotive Engineering Center and School of Automotive Studies, Tongji University, Shanghai 201804, China.
ACS Omega. 2023 May 1;8(18):16364-16372. doi: 10.1021/acsomega.3c01145. eCollection 2023 May 9.
Ever-developing energy device technologies require the exploration of advanced materials with multiple functions. Heteroatom-doped carbon has been attracting attention as an advanced electrocatalyst for zinc-air fuel cell applications. However, the efficient use of heteroatoms and the identification of active sites are still worth investigating. Herein, a tridoped carbon is designed in this work with multiple porosities and high specific surface area (980 m g). The synergistic effects of nitrogen (N), phosphorus (P), and oxygen (O) in micromesoporous carbon on oxygen reduction reaction (ORR)/oxygen evolution reaction (OER) catalysis are first investigated comprehensively. Metal-free N-, P-, and O-codoped micromesoporous carbon (NPO-MC) exhibits attractive catalytic activity in zinc-air batteries and outperforms a number of other catalysts. Combined with a detailed study of N, P, and O dopants, four optimized doped carbon structures are employed. Meanwhile, density functional theory (DFT) calculations are made for the codoped species. The lowest free energy barrier for the ORR can be attributed to the pyridine nitrogen and N-P doping structures, which is an important reason for the remarkable performance of NPO-MC catalyst in electrocatalysis.
不断发展的能源设备技术需要探索具有多种功能的先进材料。杂原子掺杂碳作为锌空气燃料电池应用的先进电催化剂一直备受关注。然而,杂原子的有效利用和活性位点的识别仍值得研究。在此,本文设计了一种具有多种孔隙率和高比表面积(980 m²/g)的三掺杂碳。首次全面研究了氮(N)、磷(P)和氧(O)在微介孔碳中对氧还原反应(ORR)/析氧反应(OER)催化的协同作用。无金属的N、P、O共掺杂微介孔碳(NPO-MC)在锌空气电池中表现出有吸引力的催化活性,并且优于许多其他催化剂。结合对N、P和O掺杂剂的详细研究,采用了四种优化的掺杂碳结构。同时,对共掺杂物种进行了密度泛函理论(DFT)计算。ORR的最低自由能垒可归因于吡啶氮和N-P掺杂结构,这是NPO-MC催化剂在电催化中表现出色的重要原因。