Facilitating two-electron oxygen reduction with pyrrolic nitrogen sites for electrochemical hydrogen peroxide production

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作者
Wei Peng
Jiaxin Liu
Xiaoqing Liu
Liqun Wang
Lichang Yin
Haotian Tan
Feng Hou
Ji Liang
机构
[1] Tianjin University,Key Laboratory of Advanced Ceramics and Machining Technology of Ministry of Education School of Materials Science and Engineering
[2] Tianjin Normal University,Applied Physics Department, College of Physics and Materials Science
[3] Chinese Academy of Sciences,Shenyang National Laboratory for Materials Science, Institute of Metal Research
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Nature Communications | / 14卷
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摘要
Electrocatalytic hydrogen peroxide (H2O2) production via the two-electron oxygen reduction reaction is a promising alternative to the energy-intensive and high-pollution anthraquinone oxidation process. However, developing advanced electrocatalysts with high H2O2 yield, selectivity, and durability is still challenging, because of the limited quantity and easy passivation of active sites on typical metal-containing catalysts, especially for the state-of-the-art single-atom ones. To address this, we report a graphene/mesoporous carbon composite for high-rate and high-efficiency 2e− oxygen reduction catalysis. The coordination of pyrrolic-N sites -modulates the adsorption configuration of the *OOH species to provide a kinetically favorable pathway for H2O2 production. Consequently, the H2O2 yield approaches 30 mol g−1 h−1 with a Faradaic efficiency of 80% and excellent durability, yielding a high H2O2 concentration of 7.2 g L−1. This strategy of manipulating the adsorption configuration of reactants with multiple non-metal active sites provides a strategy to design efficient and durable metal-free electrocatalyst for 2e− oxygen reduction.
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