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Title

Fast‐Charging Zinc‐Air Batteries with Stable Bifunctional Oxygen Electrocatalysis of Mo‐Induced Nanodefective Mo─Co/N─C Catalyst.

Authors

Zhang, Yan; Ma, Xiaoyue; Cheng, Zhendong; Wang, Jingwen; Wen, Guobin; Yang, Lin; Bai, Zhengyu

Abstract

Fast‐charging technology plays a pivotal role in propelling the commercialization of zinc‐air batteries (ZABs). While the lifetime of ZABs under fast‐charging is severely shortened by the abundant O2 bubbles and the deactivation of the cathode catalysts. Herein, a defective Mo─Co/N─C electrocatalyst is presented with Co nanoparticles and molybdenum‐oxo subnano clusters by pyrolyzing the Lindqvist polyoxometalate incorporated ZIF‐67 precursor. The crystalline defects are exacerbated by doping the polyoxometalate into the pores of ZIF‐67. Furthermore, the accessibility of the pore defects is increased by Mo‐leaching during the pre‐activation. These accessible pore defects effectively prevent the exfoliation of catalysts from the support under the attack of O2 bubbles, and improve the electrolyte penetration. Besides, the pore defects offer numerous active sites for the electrocatalytic reactions, resulting in an active and stable Mo─Co/N─C catalyst. Hence, such a Mo─Co/N─C electrocatalyst achieves a long lifetime of 1538 h at 5 mA cm−2, and a long lifetime of 641 h under a fast charge of 50 mA cm−2 in the homemade ZAB. The unique components and operational mechanisms propel scientists to portray splendid blueprints for durable fast‐charging ZABs for potential industrial applications.

Subjects

ELECTROCATALYSIS; CATALYSTS; CATALYST poisoning; CATALYST supports; INDUSTRIAL capacity; OXYGEN evolution reactions; STORAGE batteries

Publication

Advanced Functional Materials, 2024, Vol 34, Issue 23, p1

ISSN

1616-301X

Publication type

Academic Journal

DOI

10.1002/adfm.202314622

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