查看原文
其他

P掺杂提高Fe–N–C催化剂中Fe–Nx活性基团的氧还原催化活性

中国科学材料 中国科学材料 2022-05-03

Fe–N–C材料是一类有前景的非贵金属氧还原催化剂。为了在酸性介质中取代Pt/C催化剂,需要大幅度地改善其氧还原催化活性。

近日,香港科技大学邵敏华教授和华盛顿州立大学林跃河教授等人Science China Materials上发表研究论文,提出一种通过P原子掺杂的方法来调节单原子Fe–N–C材料中Fe–Nx活性位点的活性。优化得到的材料在0.1 mol L−1 HClO4溶液中表现出优异的氧还原性能,其半波电位为0.858 V(比没有P掺杂的Fe–N–C材料高23 mV)。密度泛函理论计算表明,P掺杂能降低限制步骤的热力学过电位,从而提高其氧还原催化活性。

图1  FeN4C, FeN4CP1, and FeN4CP3中 Fe–N4位点的ORR过程:(a)计算模型;(b)自由能图。

该研究成果最近发表于Science China Materials, 2019, doi: 10.1007/s40843-019-1207-y

 


Porous nitrogen/halogen dual-doped nanocarbons derived from imidazolium functionalized cationic metal-organic frameworks for highly efficient oxygen reduction reaction  

Qiao Wu, Jun Liang, Jun-Dong Yi, Peng-Chao Shi, Yuan-Biao Huang, Rong Cao

SCIENCE CHINA Materials, 2019, 62(5): 671-680


Two-dimensional titanium carbide MXenes as efficient non-noble metal electrocatalysts for oxygen reduction reaction  

Han Lin, Lisong Chen, Xiangyu Lu, Heliang Yao, Yu Chen, Jianlin Shi

SCIENCE CHINA Materials, 2019, 62(5): 662-670


Co/N co-doped graphene-like nanocarbon for highly efficient oxygen reduction electrocatalyst  

Lei Liu, Jian Zhang, Wujun Ma, Yunhui Huang

SCIENCE CHINA Materials, 2019, 62(3): 359-367


N, P-dual doped carbon with trace Co and rich edge sites as highly efficient electrocatalyst for oxygen reduction reaction Dafeng Yan, Lan Guo, Chao Xie, Yanyong Wang, Yunxiao Li, Hao Li, Shuangyin Wang

SCIENCE CHINA Materials, 2018, 61(5): 679-685


Bimetallic organic frameworks derived CuNi/carbon nanocomposites as efficient electrocatalysts for oxygen reduction reaction  

Sisi Wu, Yinggang Zhu, Yifeng Huo, Yaocong Luo, Lihua Zhang, Yi Wan, Bo Nan, Lujie Cao, Zhenyu Wang, Minchan Li, Mingyang Yang, Hua Cheng, Zhouguang Lu

SCIENCE CHINA Materials, 2017, 60(7): 654-663

 


点击左下角“阅读原文”,阅读以上文章PDF原文

—关注中国科学材料,请长按识别二维码—



您可能也对以下帖子感兴趣

文章有问题?点此查看未经处理的缓存