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钯-铂核壳结构电催化剂电化学腐蚀的直接原位成像

Direct in-situ imaging of electrochemical corrosion of Pd-Pt core-shell electrocatalysts.

作者信息

Shi Fenglei, Tieu Peter, Hu Hao, Peng Jiaheng, Zhang Wencong, Li Fan, Tao Peng, Song Chengyi, Shang Wen, Deng Tao, Gao Wenpei, Pan Xiaoqing, Wu Jianbo

机构信息

Center of Hydrogen Science & State Key Laboratory of Metal Matrix Composites, School of Materials Science and Engineering, Shanghai Jiao Tong University, 800 Dongchuan Rd, Shanghai, 200240, People's Republic of China.

Department of Chemistry, University of California, Irvine, Irvine, CA, 92697, USA.

出版信息

Nat Commun. 2024 Jun 14;15(1):5084. doi: 10.1038/s41467-024-49434-3.

Abstract

Corrosion of electrocatalysts during electrochemical operations, such as low potential - high potential cyclic swapping, can cause significant performance degradation. However, the electrochemical corrosion dynamics, including structural changes, especially site and composition specific ones, and their correlation with electrochemical processes are hidden due to the insufficient spatial-temporal resolution characterization methods. Using electrochemical liquid cell transmission electron microscopy, we visualize the electrochemical corrosion of Pd@Pt core-shell octahedral nanoparticles towards a Pt nanoframe. The potential-dependent surface reconstruction during multiple continuous in-situ cyclic voltammetry with clear redox peaks is captured, revealing an etching and deposition process of Pd that results in internal Pd atoms being relocated to external surface, followed by subsequent preferential corrosion of Pt (111) terraces rather than the edges or corners, simultaneously capturing the structure evolution also allows to attribute the site-specific Pt and Pd atomic dynamics to individual oxidation and reduction events. This work provides profound insights into the surface reconstruction of nanoparticles during complex electrochemical processes.

摘要

在电化学操作过程中,如低电位 - 高电位循环切换,电催化剂的腐蚀会导致显著的性能下降。然而,由于时空分辨率表征方法不足,包括结构变化(特别是位点和成分特异性变化)及其与电化学过程的相关性在内的电化学腐蚀动力学仍不为人知。利用电化学液体池透射电子显微镜,我们可视化了Pd@Pt核壳八面体纳米颗粒向Pt纳米框架的电化学腐蚀过程。在具有清晰氧化还原峰的多次连续原位循环伏安法中,捕获了电位依赖的表面重构过程,揭示了Pd的蚀刻和沉积过程,该过程导致内部Pd原子重新定位到外表面,随后Pt(111)平台而非边缘或角落发生优先腐蚀,同时捕获结构演变还可以将位点特异性的Pt和Pd原子动力学归因于单个氧化和还原事件。这项工作为复杂电化学过程中纳米颗粒的表面重构提供了深刻见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce65/11178921/e1f16c662f06/41467_2024_49434_Fig1_HTML.jpg

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