Switching the oxygen reduction reaction pathway via tailoring the electronic structure of FeN4/C catalysts
2021-11-05
发表期刊ACS CATALYSIS (IF:11.3[JCR-2023],12.6[5-Year])
ISSN2155-5435
EISSN2155-5435
卷号11期号:21页码:13020-13027
发表状态已发表
DOI10.1021/acscatal.1c03728
摘要

FeN4-type carbon-based materials are promising non-precious-metal catalysts for the oxygen reduction reaction (ORR). However, FeN4/C catalysts always exhibit different ORR activities and selectivities, and their structure− performance relationship remains elusive. Herein, we design a covalent triazine framework with abundant N4 units (CTF-N4) to anchor Fe ions to precisely prepare a FeN4-type precursor (CTF-FeN4) that undergoes the 2e− ORR pathway with high selectivity. Interestingly, such a 2e− ORR pathway can be switched to a 4e− route through the modulation of the electronic structure by a controlled-pyrolysis process. Both X-ray photoelectron and synchrotron X-ray absorption spectra verify that all of the samples maintain the atomically dispersed FeN4 type configuration before and after the heat treatment, but the nonplanarity of FeN4/C increases dramatically with the carbonization temperature. Density functional theory calculations reveal that the introduced Fe atoms and the enhanced nonplanarity enhance the binding energy of *OOH on C adjacent to the pyridinic N, which favors the 4e− ORR path. Our study provides a fundamental understanding of the ORR mechanism on FeN4/C with a tunable electronic structure, hence paving the way for the development of cost-effective electrocatalysts for specific applications. © 2021 American Chemical Society. All rights reserved.

关键词Binding energy Binding sites Carbonization Catalyst selectivity Density functional theory Electrocatalysts Electrolytic reduction Electronic structure Iron Iron compounds Oxygen X ray absorption Carbon based materials Electronic.structure FeN4/C catalyst Non precious metal catalysts Nonplanarity Oxygen reduction reaction Reaction paths Reaction pathways Selectivity ]+ catalyst FeN4/C catalysts oxygen reduction reaction nonplanarity reaction path selectivity
收录类别EI ; SCIE
语种英语
WOS研究方向Chemistry
WOS类目Chemistry, Physical
WOS记录号WOS:000716773800017
出版者American Chemical Society
EI入藏号20214411099287
EI主题词Cost effectiveness
EI分类号533.1 Ore Treatment ; 545.1 Iron ; 711 Electromagnetic Waves ; 801.2 Biochemistry ; 801.4 Physical Chemistry ; 802.2 Chemical Reactions ; 803 Chemical Agents and Basic Industrial Chemicals ; 804 Chemical Products Generally ; 911.2 Industrial Economics ; 922.1 Probability Theory ; 931.3 Atomic and Molecular Physics ; 931.4 Quantum Theory ; Quantum Mechanics
原始文献类型Journal article (JA)
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文献类型期刊论文
条目标识符https://kms.shanghaitech.edu.cn/handle/2MSLDSTB/133308
专题物质科学与技术学院_博士生
物质科学与技术学院_PI研究组_杨波组
通讯作者Zhu, Yanping; Li, Jiejie; Chen, Yubin; Cheng, Qingqing; Hu, Weibo; Yang, Hui
作者单位
1.Shanghai Advanced Research Institute, Chinese Academy of Sciences, Shanghai; 201210, China;
2.University of Chinese Academy of Sciences, Beijing; 100039, China;
3.School of Physical Science and Technology, ShanghaiTech University, Shanghai; 201210, China
通讯作者单位物质科学与技术学院
推荐引用方式
GB/T 7714
Zhu, Yanping,Li, Jiejie,Chen, Yubin,et al. Switching the oxygen reduction reaction pathway via tailoring the electronic structure of FeN4/C catalysts[J]. ACS CATALYSIS,2021,11(21):13020-13027.
APA Zhu, Yanping.,Li, Jiejie.,Chen, Yubin.,Zou, Jian.,Cheng, Qingqing.,...&Yang, Hui.(2021).Switching the oxygen reduction reaction pathway via tailoring the electronic structure of FeN4/C catalysts.ACS CATALYSIS,11(21),13020-13027.
MLA Zhu, Yanping,et al."Switching the oxygen reduction reaction pathway via tailoring the electronic structure of FeN4/C catalysts".ACS CATALYSIS 11.21(2021):13020-13027.
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