A review of ordered PtCo3 catalyst with higher oxygen reduction reaction activity in proton exchange membrane fuel cells

IF 9.4 1区 化学 Q1 CHEMISTRY, PHYSICAL Journal of Colloid and Interface Science Pub Date : 2024-10-18 DOI:10.1016/j.jcis.2024.10.063
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Abstract

This review is devoted to the potential advantages of ordered alloy catalysts in proton exchange membrane fuel cells (PEMFCs), specifically focusing on the development of the low Pt content, high activity, and durability ordered PtCo3 catalyst. Due to the sluggish oxygen reduction reaction (ORR) kinetics and poor durability, the overall performance of the fuel cell is affected, and its application and promotion are limited. To address this issue, researchers have explored various synthetic strategies, such as element doping, morphology adjusting, structure controlling, ordering and support/metal interaction enhancement. This article extensively discussed the Pt related ORR catalysts and follows an in-depth analysis of ordered PtCo3. The introduction briefly discusses the direction of development of fuel cell catalysts and frontier progress, including theoretical mechanism, practical preparation, and Pt-containing electrode structures, etc. The subsequent chapter focuses on the Pt-Co catalyst, the evolution process of Pt alloy to Pt-Co alloy and the improvement scheme are introduced. The next chapter describes the properties of PtCo3. Although the ordered PtCo3 catalyst has a wide range of applicability due to low cost and high activity catalyst. However, besides the common agglomeration and sintering problems of Pt-Co alloy, its commercial application still faces unique problems of oversized crystal size, phase segregation, ordering transformation and transition metal dissolution. Therefore, in Chapter 4, this overview provides some possible improvement methods for three specific functions: crystal refinement, enhancing the effect of support and active substances, and anti-dissolution.

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质子交换膜燃料电池中具有更高氧还原反应活性的有序钴铂催化剂综述。
本综述专门讨论有序合金催化剂在质子交换膜燃料电池(PEMFC)中的潜在优势,尤其侧重于低铂含量、高活性和耐久性有序钴铂催化剂的开发。由于氧还原反应(ORR)动力学迟缓、耐久性差,燃料电池的整体性能受到影响,其应用和推广受到限制。针对这一问题,研究人员探索了多种合成策略,如元素掺杂、形貌调整、结构控制、有序化和支撑/金属相互作用增强等。本文广泛讨论了与铂有关的 ORR 催化剂,并对有序 PtCo3 进行了深入分析。引言简要论述了燃料电池催化剂的发展方向和前沿进展,包括理论机理、实际制备、含铂电极结构等。随后一章重点介绍了铂-钴催化剂,介绍了铂合金向铂-钴合金的演化过程和改进方案。下一章介绍了 PtCo3 的特性。尽管有序 PtCo3 催化剂因其低成本和高活性催化剂而具有广泛的适用性。然而,除了铂钴合金常见的团聚和烧结问题外,其商业应用还面临着晶体尺寸过大、相分离、有序转变和过渡金属溶解等独特问题。因此,本综述将在第 4 章中针对晶体细化、增强支撑和活性物质的效果以及防溶解这三个具体功能提供一些可行的改进方法。
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来源期刊
CiteScore
16.10
自引率
7.10%
发文量
2568
审稿时长
2 months
期刊介绍: The Journal of Colloid and Interface Science publishes original research findings on the fundamental principles of colloid and interface science, as well as innovative applications in various fields. The criteria for publication include impact, quality, novelty, and originality. Emphasis: The journal emphasizes fundamental scientific innovation within the following categories: A.Colloidal Materials and Nanomaterials B.Soft Colloidal and Self-Assembly Systems C.Adsorption, Catalysis, and Electrochemistry D.Interfacial Processes, Capillarity, and Wetting E.Biomaterials and Nanomedicine F.Energy Conversion and Storage, and Environmental Technologies
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