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钴和铁对LaCoFeO析氧反应活性的协同作用

Synergistic Effects of Co and Fe on the Oxygen Evolution Reaction Activity of LaCo Fe O.

作者信息

Füngerlings Achim, Koul Adarsh, Dreyer Maik, Rabe Anna, Morales Dulce M, Schuhmann Wolfgang, Behrens Malte, Pentcheva Rossitza

机构信息

Department of Physics, Theoretical Physics and Center of Nanointegration (CENIDE), University of Duisburg-Essen, 47057, Duisburg, Germany.

Analytical Chemistry-Center for Electrochemical Sciences (CES), Faculty of Chemistry and Biochemistry, Ruhr University Bochum, 44780, Bochum, Germany.

出版信息

Chemistry. 2021 Dec 6;27(68):17145-17158. doi: 10.1002/chem.202102829. Epub 2021 Oct 27.

Abstract

In a combined experimental and theoretical study we assess the role of Co incorporation on the OER activity of LaCo Fe O . Phase pure perovskites were synthesized up to in 0.025/0.050 steps. HAADF STEM and EDX analysis points towards FeO -terminated (001)-facets in LaFeO , in accordance with the stability diagram obtained from density functional theory calculations with a Hubbard U term (DFT+U). Linear sweep voltammetry conducted in a rotating disk electrode setup shows a reduction of the OER overpotential and a nonmonotonic trend with x, with double layer capacitance measurements indicating an intrinsic nature of activity. This is supported by DFT+U results that show reduced overpotentials for both Fe and Co reaction sites with the latter reaching values of 0.32-0.40 V, ∼0.3 V lower than for Fe. This correlates with a stronger reduction of the binding energy difference of the *O and *OH intermediates towards an optimum value of 1.6 eV for , the OH deprotonation being the potential limiting step in most cases. Significant variations of the magnetic moments of both surface and subsurface Co and Fe during OER demonstrate that the beneficial effect is a result of a concerted action involving many surrounding ions, which extends the concept of the active site.

摘要

在一项结合实验与理论的研究中,我们评估了钴掺入对LaCoFeO析氧活性的作用。以0.025/0.050的步长合成了高达相纯的钙钛矿。高角度环形暗场扫描透射电子显微镜(HAADF STEM)和能谱分析(EDX)表明,LaFeO中存在FeO端接的(001)面,这与通过含哈伯德U项的密度泛函理论计算(DFT+U)得到的稳定性图一致。在旋转圆盘电极装置中进行的线性扫描伏安法显示,析氧过电位降低且随x呈非单调趋势,双层电容测量表明活性具有本征性质。DFT+U结果支持了这一点,该结果表明Fe和Co反应位点的过电位均降低,后者的值为0.32 - 0.40 V,比Fe低约0.3 V。这与O和OH中间体的结合能差向最佳值1.6 eV的更强降低相关,在大多数情况下,OH去质子化是潜在的限速步骤。析氧过程中表面和次表面Co和Fe的磁矩发生显著变化,表明有益效果是涉及许多周围离子协同作用的结果,这扩展了活性位点的概念。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d1c4/9298257/e3d27e6c869f/CHEM-27-17145-g002.jpg

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