Chen Ming, Jiang Yu, Mei Ping, Zhang Yan, Zheng Xianfeng, Xiao Wei, You Qinliang, Yan Xuemin, Tang Haolin
College of Chemistry and Environmental Engineering, Yangtze University, Jingzhou 434023, Hubei, China.
Key Laboratory of Optoelectronic Chemical Materials and Devices, Ministry of Education, School of Chemical and Environmental Engineering, Jianghan University, Wuhan 430056, China.
Polymers (Basel). 2019 May 1;11(5):767. doi: 10.3390/polym11050767.
High-performance non-precious metal catalysts exhibit high electrocatalytic activity for the oxygen-reduction reaction (ORR), which is indispensable for facilitating the development of multifarious renewable energy systems. In this work; N-doped carbon-encapsulated FeC nanosphere ORR catalysts were prepared through simple carbonization of iron precursors loaded with polyacrylamide microspheres. The effect of iron precursors loading on the electrocatalytic activity for ORR was investigated in detail. The electrochemical measurements revealed that the N-doped carbon-encapsulated FeC nanospheres exhibited outstanding electrocatalytic activity for ORR in alkaline solutions. The optimized catalyst possessed more positive onset potential (0.94 V vs. reversible hydrogen electrode (RHE)), higher diffusion limiting current (5.78 mA cm), better selectivity (the transferred electron number > 3.98 at 0.19 V vs. RHE) and higher durability towards ORR than a commercial Pt/C catalyst. The efficient electrocatalytic performance towards ORR can be attributed to the synergistic effect between N-doped carbon and FeC as catalytic active sites; and the excellent stability results from the core-shell structure of the catalysts.
高性能非贵金属催化剂对氧还原反应(ORR)表现出高电催化活性,这对于促进各种可再生能源系统的发展不可或缺。在本工作中,通过对负载有聚丙烯酰胺微球的铁前驱体进行简单碳化制备了氮掺杂碳包覆FeC纳米球ORR催化剂。详细研究了铁前驱体负载量对ORR电催化活性的影响。电化学测量表明,氮掺杂碳包覆FeC纳米球在碱性溶液中对ORR表现出优异的电催化活性。优化后的催化剂具有更正的起始电位(相对于可逆氢电极(RHE)为0.94 V)、更高的扩散极限电流(5.78 mA cm)、更好的选择性(在相对于RHE为0.19 V时转移电子数>3.98)以及比商业Pt/C催化剂更高的ORR耐久性。对ORR的高效电催化性能可归因于作为催化活性位点的氮掺杂碳和FeC之间的协同效应,而优异的稳定性源于催化剂的核壳结构。