Alsaç Elif Pınar, Boke Marlyn, Bissonnette Justine R, Smith Rodney D L
Department of Chemistry, University of Waterloo, 200 University Avenue W. Waterloo Ontario N2L 3G1 Canada
Waterloo Institute for Nanotechnology, University of Waterloo, 200 University Avenue W. Waterloo Ontario N2L 3G1 Canada.
Chem Sci. 2024 Aug 27;15(37):15339-51. doi: 10.1039/d4sc01841a.
A microscopic understanding of how Fe-doping of Co(OH) improves electrocatalytic oxygen evolution remains elusive. We study two Co Fe (OH) series that differ in fabrication protocol and find composition alone poorly correlates to catalyst performance. Structural descriptors extracted using X-ray diffraction, X-ray absorption spectroscopy, and Raman spectroscopy reveal element-specific distortions in Co Fe (OH). These structural descriptors are composition-dependent within individual sample series but inconsistent across fabrication protocols, revealing fabrication-dependence in catalyst microstructure. Correlations between structural parameters from different techniques show that Fe-O resists bond length changes, forcing distortion of Co environments. We find the difference in O-M-O bond angles between Co and Fe sites to correlate with electrocatalytic behavior across both sample series, which we attribute to asymmetric distortion of potential energy surfaces for the Co(iii) to Co(iv) oxidation. A Tafel slope consistent with a rate-limiting step without electron transfer emerges as the O-Co-O angle decreases, implying a distortion-induced transition in the rate-limiting step. The fabrication dependence of electronic and bonding structure in the catalysts should be considered in theoretical and high-throughput analyses of electrocatalyst materials.
对于铁掺杂氢氧化钴如何改善电催化析氧的微观理解仍然难以捉摸。我们研究了两个在制备方案上有所不同的钴铁(氢氧化物)系列,发现仅成分与催化剂性能的相关性较差。使用X射线衍射、X射线吸收光谱和拉曼光谱提取的结构描述符揭示了钴铁(氢氧化物)中特定元素的畸变。这些结构描述符在单个样品系列中取决于成分,但在不同制备方案之间不一致,揭示了催化剂微观结构对制备的依赖性。不同技术的结构参数之间的相关性表明,铁氧键抵抗键长变化,迫使钴环境发生畸变。我们发现钴和铁位点之间的O-M-O键角差异与两个样品系列的电催化行为相关,我们将其归因于钴(III)到钴(IV)氧化的势能面的不对称畸变。随着O-Co-O角减小,出现了与无电子转移的速率限制步骤一致的塔菲尔斜率,这意味着速率限制步骤中发生了畸变诱导的转变。在电催化剂材料的理论和高通量分析中,应考虑催化剂中电子和键结构对制备的依赖性。