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基于铂的电催化剂的设计策略及燃料电池中的耐受策略:综述

Design strategies of Pt-based electrocatalysts and tolerance strategies in fuel cells: a review.

作者信息

Luo Wenlei, Jiang Yitian, Wang Mengwei, Lu Dan, Sun Xiaohui, Zhang Huahui

机构信息

National Innovation Institute of Defense Technology, Academy of Military Science Beijing 100071 China.

State Key Laboratory of Space Power-sources Technology, Shanghai Institute of Space Power-Sources 2965 Dongchuan Road Shanghai 200245 China

出版信息

RSC Adv. 2023 Feb 7;13(7):4803-4822. doi: 10.1039/d2ra07644f. eCollection 2023 Jan 31.

Abstract

As highly efficient conversion devices, proton-exchange-membrane fuel cells (PEMFCs) can directly convert chemical energy to electrical energy with high efficiencies and lower or even zero emissions compared to combustion engines. However, the practical applications of PEMFCs have been seriously hindered by the intermediates (especially CO) poisoning of anodic Pt catalysts. Hence, how to improve the CO tolerance of the needed Pt catalysts and reveal their anti-CO poisoning mechanism are the key points to developing novel anti-toxic Pt-based electrocatalysts. To date, two main strategies have received increasing attention in improving the CO tolerance of Pt-based electrocatalysts, including alloying Pt with a second element and fabricating composites with geometry and interface engineering. Herein, we will first discuss the latest developments of Pt-based alloys and their anti-CO poisoning mechanism. Subsequently, a detailed description of Pt-based composites with enhanced CO tolerance by utilizing the synergistic effect between Pt and carriers is introduced. Finally, a brief perspective and new insights on the design of Pt-based electrocatalysts to inhibit CO poisoning in PEMFCs are also presented.

摘要

作为高效的转换装置,质子交换膜燃料电池(PEMFCs)能够将化学能直接高效地转化为电能,与内燃机相比,其排放更低甚至为零。然而,PEMFCs的实际应用受到阳极Pt催化剂的中间体(尤其是CO)中毒的严重阻碍。因此,如何提高所需Pt催化剂的CO耐受性并揭示其抗CO中毒机制是开发新型抗毒Pt基电催化剂的关键要点。迄今为止,在提高Pt基电催化剂的CO耐受性方面,两种主要策略受到了越来越多的关注,包括将Pt与第二种元素合金化以及通过几何结构和界面工程制备复合材料。在此,我们将首先讨论Pt基合金的最新进展及其抗CO中毒机制。随后,介绍通过利用Pt与载体之间的协同效应来提高CO耐受性的Pt基复合材料的详细描述。最后,还对用于抑制PEMFCs中CO中毒的Pt基电催化剂的设计提出了简要展望和新见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a9aa/9903923/9876c9309218/d2ra07644f-f1.jpg

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