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用于形成[IrO]-[IrO]框架的表面重构:在酸性介质中实现稳定且活性的析氧反应性能的关键结构。

Surface Reconstruction for Forming the [IrO]-[IrO] Framework: Key Structure for Stable and Activated OER Performance in Acidic Media.

作者信息

Ma Cheng-Long, Wang Zhi-Qiang, Sun Wei, Cao Li-Mei, Gong Xue-Qing, Yang Ji

机构信息

School of Resources and Environmental Engineering, East China University of Science and Technology, 130 Mei Long Road, Shanghai 200237, China.

Key Laboratory for Advanced Materials, Centre for Computational Chemistry and Research Institute of Industrial Catalysis, School of Chemistry and Molecular Engineering, East China University of Science and Technology, 130 Meilong Road, Shanghai 200237, China.

出版信息

ACS Appl Mater Interfaces. 2021 Jun 30;13(25):29654-29663. doi: 10.1021/acsami.1c06599. Epub 2021 Jun 21.

Abstract

The surface reconstruction of iridium-based derivatives (AIrO) was extensively demonstrated to have an excellent oxygen evolution reaction (OER) performance in an acidic medium. It is urgent to use various spectroscopy and computational methods to explore the electronic state changes in the surface reconstruction process. Herein, the underestimated LuIrO was synthesized and investigated. Four typical forms of electrochemistry impedance spectra involved in the reconstruction process revealed three dominating forms of reconstructed pyrochlore in the OER stage, including the inner intact pyrochlore, mid metastable [IrO]-[IrO] framework, and the outer collapse amorphous layer. The enhancing electron transport efficiency of the corner-shared [IrO]-[IrO] framework was revealed as a critical role in acidic systems. The density of state (DOS) for the constructed [IrO]-[IrO] framework corroborated the enhancement of Ir-O hybridization and the downshift of the d-band center. Additionally, we contrast the pristine and reconstruction properties of the PrIrO, EuIrO, and LuIrO in alkaline and acidic media. The DOS and the XANES results reveal the scale relationship between the O 2p band center and the intrinsic activity for bulk pyrochlore in alkaline media. The highest O 2p center and the highest Ir-O hybridization of LuIrO exhibited the best OER performance among the Ir-based pyrochlore, up to a ninefold improvement in Ir-mass activity compared to IrO. Our findings emphasize the electrochemical behavior of the reconstruction process for activated water-splitting performance.

摘要

铱基衍生物(AIrO)的表面重构已被广泛证明在酸性介质中具有优异的析氧反应(OER)性能。迫切需要使用各种光谱学和计算方法来探索表面重构过程中的电子态变化。在此,合成并研究了被低估的LuIrO。重构过程中涉及的四种典型电化学阻抗谱形式揭示了OER阶段重构烧绿石的三种主要形式,包括内部完整的烧绿石、中间亚稳的[IrO]-[IrO]框架和外部坍塌的非晶层。角共享[IrO]-[IrO]框架电子传输效率的提高被揭示为在酸性体系中的关键作用。构建的[IrO]-[IrO]框架的态密度(DOS)证实了Ir-O杂化的增强和d带中心的下移。此外,我们对比了PrIrO、EuIrO和LuIrO在碱性和酸性介质中的原始和重构性质。DOS和XANES结果揭示了碱性介质中块状烧绿石的O 2p带中心与本征活性之间的标度关系。LuIrO的最高O 2p中心和最高Ir-O杂化在基于Ir的烧绿石中表现出最佳的OER性能,与IrO相比,Ir质量活性提高了九倍。我们的研究结果强调了重构过程对激活水分解性能的电化学行为。

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