Cu-doped Pd7Te3 nanowires for methanol oxidation under alkaline condition

IF 9.6 1区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
Meng-Qian Li, Ze-Qun Han, Jun-Cheng Zhu, Dong-Po He, Qing Hu, Wen-Ya Fan, Qin-Yuan Hu, Xing-Chen Jiao, Qing-Xia Chen
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Abstract

Highly active and robust electrocatalysts for methanol oxidation reaction (MOR) are of great significance to the commercial availability of alkaline direct methanol fuel cells (ADMFC). Pd-based nanostructures have received considerable attention in ADMFCs among non-platinum catalysts due to their high activity and tolerance against CO poisoning, which is strongly determined by their composition and structure. Herein, a one-spot hydrothermal method to synthesize Cu-doped Pd7Te3 ultrathin nanowires was proposed. The density functional theory calculations show that the Cu doping simultaneously facilitates the desorption of CO* and adsorption of OH, which refreshes the active sites quickly and thus enhances the electroactivity for MOR. Benefiting from their ultrathin architecture and the modified bonding and anti-bonding d states of Pd, Cu-doped Pd7Te3 nanowires show about twofold and threefold mass activity promotion and enhanced durability for MOR when compared to the pure Pd7Te3 nanowires and commercial Pd/C catalysts. This work not only provides a simple one-step synthesis strategy for Pd-based nanowire catalysts, but also helps to inspire the catalyst design in ADMFC.

Graphical abstract

Abstract Image

用于碱性条件下甲醇氧化的铜掺杂 Pd7Te3 纳米线
用于甲醇氧化反应(MOR)的高活性、高稳定性电催化剂对于碱性直接甲醇燃料电池(ADMFC)的商业化具有重要意义。在非铂催化剂中,钯基纳米结构因其高活性和对 CO 中毒的耐受性而在 ADMFC 中受到广泛关注,而这在很大程度上取决于其组成和结构。本文提出了一种单点水热法合成掺铜 Pd7Te3 超细纳米线的方法。密度泛函理论计算表明,Cu 的掺杂同时促进了 CO* 的解吸和 OH 的吸附,从而快速刷新活性位点,增强了 MOR 的电活性。与纯 Pd7Te3 纳米线和商用 Pd/C 催化剂相比,掺铜 Pd7Te3 纳米线得益于其超薄结构以及 Pd 的成键和反成键 d 状态的改变,对 MOR 的质量活性分别提高了两倍和三倍,耐久性也有所增强。这项工作不仅提供了一种简单的一步法合成 Pd 基纳米线催化剂的策略,而且有助于启发 ADMFC 中催化剂的设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Rare Metals
Rare Metals 工程技术-材料科学:综合
CiteScore
12.10
自引率
12.50%
发文量
2919
审稿时长
2.7 months
期刊介绍: Rare Metals is a monthly peer-reviewed journal published by the Nonferrous Metals Society of China. It serves as a platform for engineers and scientists to communicate and disseminate original research articles in the field of rare metals. The journal focuses on a wide range of topics including metallurgy, processing, and determination of rare metals. Additionally, it showcases the application of rare metals in advanced materials such as superconductors, semiconductors, composites, and ceramics.
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