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电催化粒子活性的多尺度分析:连接纳米尺度测量与整体行为

Multiscale Analysis of Electrocatalytic Particle Activities: Linking Nanoscale Measurements and Ensemble Behavior.

作者信息

Kang Minkyung, Bentley Cameron L, Mefford J Tyler, Chueh William C, Unwin Patrick R

机构信息

School of Chemistry, The University of Sydney, Camperdown 2006 NSW, Australia.

Department of Chemistry, The University of Warwick, Coventry CV4 7AL, U.K.

出版信息

ACS Nano. 2023 Nov 14;17(21):21493-21505. doi: 10.1021/acsnano.3c06335. Epub 2023 Oct 26.

Abstract

Nanostructured electrocatalysts exhibit variations in electrochemical properties across different length scales, and the intrinsic catalytic characteristics measured at the nanoscale often differ from those at the macro-level due to complexity in electrode structure and/or composition. This aspect of electrocatalysis is addressed herein, where the oxygen evolution reaction (OER) activity of β-Co(OH) platelet particles of well-defined structure is investigated in alkaline media using multiscale scanning electrochemical cell microscopy (SECCM). Microscale SECCM probes of ∼50 μm diameter provide voltammograms from (ca. 40-250 particles) and reveal increasing dispersion in the OER rates for samples of the same size as the particle population within the sample decreases. This suggests the underlying significance of heterogeneous activity at the single-particle level that is confirmed through measurements with SECCM probes of ∼5 μm diameter. These measurements of multiple individual particles directly reveal significant variability in the OER activity at the single-particle level that do not simply correlate with the particle size, basal plane roughness, or exposed edge plane area. In combination, these measurements demarcate a transition from an "individual particle" to an "ensemble average" response at a population size of ca. 130 particles, above which the OER current density closely reflects that measured in bulk at conventional macroscopic particle-modified electrodes. Nanoscale SECCM probes (ca. 120 and 440 nm in diameter) enable measurements at the , revealing that there is selective OER activity at the edges of particles and highlighting the importance of the three-phase boundary where the catalyst, electrolyte, and supporting carbon electrode meet, for efficient electrocatalysis. Furthermore, subparticle measurements unveil heterogeneity in the OER activity among particles that appear superficially similar, attributable to differences in defect density within the individual particles, as well as to variations in electrical and physical contact with the support material. Overall this study provides a roadmap for the multiscale analysis of nanostructured electrocatalysts, directly demonstrating the importance of multilength scale factors, including particle structure, particle-support interaction, presence of defects, etc., in governing the electrochemical activities of β-Co(OH) platelet particles and ultimately guiding the rational design and optimization of these materials for alkaline water electrolysis.

摘要

纳米结构电催化剂在不同长度尺度上呈现出电化学性质的变化,由于电极结构和/或组成的复杂性,在纳米尺度上测量的本征催化特性通常与宏观尺度上的不同。本文探讨了电催化的这一方面,其中使用多尺度扫描电化学池显微镜(SECCM)研究了结构明确的β-Co(OH)片状颗粒在碱性介质中的析氧反应(OER)活性。直径约50μm的微尺度SECCM探针提供了来自(约40 - 250个颗粒)的伏安图,并揭示了随着样品中与颗粒群体大小相同的样品的OER速率分散性增加。这表明了单颗粒水平上异质活性的潜在重要性,这通过使用直径约5μm的SECCM探针进行测量得到了证实。对多个单个颗粒的这些测量直接揭示了单颗粒水平上OER活性的显著变异性,这些变异性与颗粒大小、基面粗糙度或暴露边缘平面面积没有简单的相关性。综合起来,这些测量划定了在约130个颗粒的群体大小处从“单个颗粒”到“总体平均”响应的转变,高于此值,OER电流密度紧密反映了在传统宏观颗粒修饰电极上在本体中测量的值。纳米尺度的SECCM探针(直径约120和440nm)能够在 进行测量,揭示了颗粒边缘存在选择性OER活性,并突出了催化剂、电解质和支撑碳电极相遇的三相边界对于高效电催化的重要性。此外,亚颗粒测量揭示了表面上相似的颗粒之间OER活性的异质性,这归因于单个颗粒内缺陷密度的差异以及与支撑材料的电气和物理接触的变化。总体而言,这项研究为纳米结构电催化剂的多尺度分析提供了路线图,直接证明了多长度尺度因素(包括颗粒结构、颗粒 - 支撑相互作用、缺陷的存在等)在控制β-Co(OH)片状颗粒的电化学活性以及最终指导这些材料用于碱性水电解的合理设计和优化方面的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d01/10655184/238cb35b831a/nn3c06335_0001.jpg

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