Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/97480
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Title: Regulating the interfacial electron density of La0.8Sr0.2Mn0.5Co0.5O3/RuOxfor efficient and low-Cost bifunctional oxygen electrocatalysts and rechargeable Zn-air batteries
Authors: Dai, Y 
Yu, J 
Zhang, Z 
Zhai, S 
Cheng, C 
Zhao, S 
Tan, P
Shao, Z
Ni, M 
Issue Date: 29-Dec-2021
Source: ACS applied materials and interfaces, 29 Dec. 2021, v. 13, no. 51, p. 61098-61106
Abstract: La0.8Sr0.2Mn0.5Co0.5O3 (LSMC) perovskite anchored with RuOx (LSMC-Ru) is fabricated as a new bifunctional electrocatalyst, with low dosage (2.43 wt %) and high utilization of noble metal Ru. The LSMC-Ru exhibits outstanding bifunctional activity with a low potential gap of 0.72 V between the oxygen evolution reaction (OER) potential at 10 mA cm-2 and the oxygen reduction reaction (ORR) half-wave potential. The strong electronic interaction between RuOx and LSMC is confirmed by both experiments and theoretical calculations. Consequently, the electron-rich Mn centers promote ORR, while the electron-deficient Ru centers facilitate OER. A Zn-air battery using the LSMC-Ru air electrode delivers a peak power density of 159 mW cm-2 and a low charge-discharge potential gap of 0.58 V at 2 mA cm-2. The high round-trip energy efficiency of 60.6% is retained after 300 cycles. This strategy of anchoring a low dosage noble metal catalyst to perovskite can be extended to other systems of noble metal-non-noble metal composite electrocatalysts to achieve both competitive performance and low cost.
Keywords: Electronic structure regulation
Oxygen evolution reaction
Oxygen reduction reaction
Perovskite oxide
Zn-air battery
Publisher: American Chemical Society
Journal: ACS applied materials and interfaces 
ISSN: 1944-8244
EISSN: 1944-8252
DOI: 10.1021/acsami.1c18081
Rights: © 2021 American Chemical Society
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ACS Applied Materials and Interfaces, copyright © American Chemical Society after peer review and technical editing by the publisher. To access the final edited and published work see https://doi.org/10.1021/acsami.1c18081.
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