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通过表征量化SrCoO电催化剂的氧非化学计量动态变化及表面相形成

Quantifying Dynamic Changes of Oxygen Nonstoichiometry and Formation of Surface Phases of SrCoO Electrocatalysts by Characterizations.

作者信息

Hu Yang, Wei Luhan, Chen Haowen, Xu Zihan, Shavorskiy Andrey, Baeumer Christoph, Lu Qiyang

机构信息

Zhejiang University, Hangzhou, Zhejiang 310027, China.

School of Engineering, Westlake University, Hangzhou, Zhejiang 310030, China.

出版信息

ACS Nano. 2025 Apr 15;19(14):13999-14009. doi: 10.1021/acsnano.4c18105. Epub 2025 Apr 6.

Abstract

Perovskite electrocatalysts like strontium cobaltite (SrCoO, denoted as SCO) experience dynamic changes in both surface and bulk during the oxygen evolution reaction (OER), rather than remaining static. This dynamic, electrochemically driven evolution in composition, structure, and ionic defects ( oxygen vacancies) can strongly impact the OER activity and stability. Yet, the current lack of quantitative information on these processes impedes a precise and predictive evaluation of the individual and combined effect of both bulk and surface transformations. Here, using epitaxial SCO thin films as a model system, we demonstrate that SCO is a bulk and surface redox-active OER electrocatalyst that undergoes a bulk phase transition via electrochemically induced oxygen intercalation, as well as a surface phase transition toward Co (oxy-)hydroxide. Specifically, applying a suite of and characterization we established a reliable relationship between oxygen nonstoichiometry, optical density, and conductivity as a function of applied potentials. We further accurately quantify the evolution of oxygen stoichiometry in the SCO bulk and the thickness of the formed surface secondary phase. Our work provides a reliable and generalizable workflow and characterization toolbox for quantitative assessment of surface and bulk transformations in oxygen-deficient perovskite electrocatalysts.

摘要

像钴酸锶(SrCoO,记为SCO)这样的钙钛矿型电催化剂在析氧反应(OER)过程中,其表面和体相都会经历动态变化,而非保持静态。这种由电化学驱动的成分、结构和离子缺陷(氧空位)的动态演变会强烈影响OER活性和稳定性。然而,目前缺乏关于这些过程的定量信息,这阻碍了对体相和表面转变的单独及综合效应进行精确和可预测的评估。在此,我们以外延SCO薄膜作为模型体系,证明SCO是一种体相和表面都具有氧化还原活性的OER电催化剂,它通过电化学诱导的氧嵌入经历体相转变,以及向氢氧化钴(羟基氧化物)的表面相转变。具体而言,通过应用一系列表征手段,我们建立了氧非化学计量比、光密度和电导率与外加电势之间可靠的关系。我们还进一步精确量化了SCO体相中氧化学计量比的演变以及所形成表面第二相的厚度。我们的工作为定量评估缺氧钙钛矿型电催化剂的表面和体相转变提供了可靠且可推广的工作流程和表征工具箱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dbb1/12023024/fcb0e1f1fdd1/nn4c18105_0004.jpg

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