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In Situ Modulation of A-Site Vacancies in LaMnO Perovskite for Surface Lattice Oxygen Activation and Boosted Redox Reactions. | LitMetric

In Situ Modulation of A-Site Vacancies in LaMnO Perovskite for Surface Lattice Oxygen Activation and Boosted Redox Reactions.

Angew Chem Int Ed Engl

State Key Joint Laboratory of Environment Simulation and Pollution Control, National Engineering Laboratory for Multi Flue Gas Pollution Control Technology and Equipment, School of Environment, Tsinghua University, 100084, Beijing, China.

Published: December 2021

Modulation of A-site defects is crucial to the redox reactions on ABO perovskites for both clean air application and electrochemical energy storage. Herein we report a scalable one-pot strategy for in situ regulation of La vacancies (V ) in LaMnO by simply introducing urea in the traditional citrate process, and further reveal the fundamental relationship between V creation and surface lattice oxygen (O ) activation. The underlying mechanism is shortened Mn-O bonds, decreased orbital ordering, promoted MnO bending vibration and weakened Jahn-Teller distortion, ultimately realizing enhanced Mn-3d and O-2p orbital hybridization. The LaMnO with optimized V exhibits order of magnitude increase in toluene oxidation and ca. 0.05 V versus RHE (reversible hydrogen electrode) increase of half-wave potential in oxygen reduction reaction (ORR). The reported strategy can benefit the development of novel defect-meditated perovskites in both heterocatalysis and electrocatalysis.

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Source
http://dx.doi.org/10.1002/anie.202111610DOI Listing

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