利用扫描电化学细胞显微镜阐明单个实体的结构与活性关系

IF 7.9 2区 化学 Q1 CHEMISTRY, PHYSICAL Current Opinion in Electrochemistry Pub Date : 2024-06-26 DOI:10.1016/j.coelec.2024.101561
Yanqi Zou, Qianjin Chen
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引用次数: 0

摘要

对电化学过程进行操作性探测,并进一步与局部结构特征相关联,是了解电活性材料内在结构与活性关系的重要途径。事实证明,扫描电化学电池显微镜是一种功能强大、用途广泛的工具,可在空间分辨率低至纳米级的情况下对电化学活性进行原位/操作性评估。对相同位置进行补充性结构表征,可提供内在电化学特性与局部结构之间的明确关联。本综述总结了这种关联方法的最新进展,展示了如何在单一实体水平上实现结构-活性关系的深入透视,涵盖电催化、光电催化和能量存储。最后,我们将分享我们对这一领域机遇的看法。
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Elucidating the structure–activity relationship on single entities by scanning electrochemical cell microscopy

Operando probing of electrochemical process and further correlation to the local structural features is a crucial route for understanding the intrinsic structure–activity relationship of electroactive materials. Scanning electrochemical cell microscopy has been proven to be a powerful and versatile tool for the in situ/operando evaluation of electrochemical activity at spatial resolution down to nanometer scale. Complementary structure characterization applied to the identical locations provides an unambiguous correlation of the intrinsic electrochemical properties to local structures. This review summarizes recent advances in this correlative approach to showcase how insightful perspectives of structure–activity relationship at the single-entity level are achieved, covering electrocatalysis, photoelectrocatalysis and energy storage. We conclude by sharing our perspective on opportunities in this field.

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来源期刊
Current Opinion in Electrochemistry
Current Opinion in Electrochemistry Chemistry-Analytical Chemistry
CiteScore
14.00
自引率
5.90%
发文量
272
审稿时长
73 days
期刊介绍: The development of the Current Opinion journals stemmed from the acknowledgment of the growing challenge for specialists to stay abreast of the expanding volume of information within their field. In Current Opinion in Electrochemistry, they help the reader by providing in a systematic manner: 1.The views of experts on current advances in electrochemistry in a clear and readable form. 2.Evaluations of the most interesting papers, annotated by experts, from the great wealth of original publications. In the realm of electrochemistry, the subject is divided into 12 themed sections, with each section undergoing an annual review cycle: • Bioelectrochemistry • Electrocatalysis • Electrochemical Materials and Engineering • Energy Storage: Batteries and Supercapacitors • Energy Transformation • Environmental Electrochemistry • Fundamental & Theoretical Electrochemistry • Innovative Methods in Electrochemistry • Organic & Molecular Electrochemistry • Physical & Nano-Electrochemistry • Sensors & Bio-sensors •
期刊最新文献
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