Metal single-site catalyst design for electrocatalytic production of hydrogen peroxide at industrial-relevant currents

Author:

Cao Peike,Quan XieORCID,Nie XiaowaORCID,Zhao KunORCID,Liu Yanming,Chen Shuo,Yu Hongtao,Chen Jingguang G.ORCID

Abstract

AbstractDirect hydrogen peroxide (H2O2) electrosynthesis via the two-electron oxygen reduction reaction is a sustainable alternative to the traditional energy-intensive anthraquinone technology. However, high-performance and scalable electrocatalysts with industrial-relevant production rates remain to be challenging, partially due to insufficient atomic level understanding in catalyst design. Here we utilize theoretical approaches to identify transition-metal single-site catalysts for two-electron oxygen reduction using the *OOH binding energy as a descriptor. The theoretical predictions are then used as guidance to synthesize the desired cobalt single-site catalyst with a O-modified Co-(pyrrolic N)4configuration that can achieve industrial-relevant current densities up to 300 mA cm2with 96–100% Faradaic efficiencies for H2O2production at a record rate of 11,527 mmol h1 gcat1. Here, we show the feasibility and versatility of metal single-site catalyst design using various commercial carbon and cobalt phthalocyanine as starting materials and the high applicability for H2O2electrosynthesis in acidic, neutral and alkaline electrolytes.

Funder

National Natural Science Foundation of China

the United States National Science Foundation AccelNet Program

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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