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Enhanced electrocatalytic performance for H2O2 generation by boron-doped porous carbon hollow spheres.


ABSTRACT: Electrocatalytic generation of H2O2 via the 2-electron pathway of oxygen reduction reaction (2e-ORR) is an attractive technology compared to the anthraquinone process due to convenience and environmental friendliness. However, catalysts with excellent selectivity and high activity for 2e-ORR are necessary for practical applications. Reported here is a catalyst comprising boron-doped porous carbon hollow spheres (B-PCHSs) prepared using the hard template method coupled with borate transesterification. In an alkali electrolyte, the selectivity of B-PCHS for 2e-ORR above 90% in range of 0.4-0.7 VRHE and an onset potential of 0.833 V was obtained. Meanwhile, the generation rate of H2O2 reached 902.48 mmol h-1 gcat-1 at 0.4 VRHE under 59.13 mA cm-2 in batch electrolysis. The excellent catalytic selectivity of B-PCHS for 2e-ORR originates from the boron element, and the catalytic activity of B-PCHS for H2O2 generation is contributed to the morphology of porous hollow spheres, which facilitates mass transfer processes.

SUBMITTER: Wang Z 

PROVIDER: S-EPMC11016794 | biostudies-literature | 2024 Apr

REPOSITORIES: biostudies-literature

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Enhanced electrocatalytic performance for H<sub>2</sub>O<sub>2</sub> generation by boron-doped porous carbon hollow spheres.

Wang Zhaohui Z   Sun Zehan Z   Li Kun K   Fan Keyi K   Tian Tian T   Jiang Haomin H   Jin Honglei H   Li Ang A   Tang Yang Y   Sun Yanzhi Y   Wan Pingyu P   Chen Yongmei Y  

iScience 20240323 4


Electrocatalytic generation of H<sub>2</sub>O<sub>2</sub> via the 2-electron pathway of oxygen reduction reaction (2e-ORR) is an attractive technology compared to the anthraquinone process due to convenience and environmental friendliness. However, catalysts with excellent selectivity and high activity for 2e-ORR are necessary for practical applications. Reported here is a catalyst comprising boron-doped porous carbon hollow spheres (B-PCHSs) prepared using the hard template method coupled with  ...[more]

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