High-Conductive Protonated Layered Oxides from H<sub>2</sub> O Vapor-Annealed Brownmillerites.
basic_science · Level V
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- Record sourced from PubMed, PMID 34590356.
- Also identified by DOI 10.1002/adma.202104623.
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Abstract
Protonated 3d transition-metal oxides often display low electronic conduction, which hampers their application in electric, magnetic, thermoelectric, and catalytic fields. Electronic conduction can be enhanced by co-inserting oxygen acceptors simultaneously. However, the currently used redox approaches hinder protons and oxygen ions co-insertion due to the selective switching issues. Here, a thermal hydration strategy for systematically exploring the synthesis of conductive protonated oxides from 3d transition-metal oxides is introduced. This strategy is illustrated by synthesizing a novel layered-oxide SrCoO<sub>3</sub> H from the brownmillerite SrCoO<sub>2.5</sub> . Compared to the insulating SrCoO<sub>2.5</sub> , SrCoO<sub>3</sub> H exhibits an unprecedented high electronic conductivity above room temperature, water uptake at 250 °C, and a thermoelectric power factor of up to 1.2 mW K<sup>-2</sup> m<sup>-1</sup> at 300 K. These findings open up opportunities for creating high-conductive protonated layered oxides by protons and oxygen ions co-doping.