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Platinum-Based Catalysts on Various Carbon Supports and Conducting Polymers for Direct Methanol Fuel Cell Applications: a Review

机译:各种直接用于甲醇燃料电池的碳载体和导电聚合物上的铂基催化剂:综述

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摘要

Platinum (Pt)-based nanoparticle metals have received a substantial amount of attention and are the most popular catalysts for direct methanol fuel cell (DMFC). However, the high cost of Pt catalysts, slow kinetic oxidation, and the formation of CO intermediate molecules during the methanol oxidation reaction (MOR) are major challenges associate with single-metal Pt catalysts. Recent studies are focusing on using either Pt alloys, such as Fe, Ni, Co, Rh, Ru, Co, and Sn metals, or carbon support materials to enhance the catalytic performance of Pt. In recent years, Pt and Pt alloy catalysts supported on great potential of carbon materials such as MWCNT, CNF, CNT, CNC, CMS, CNT, CB, and graphene have received remarkable interests due to their significant properties that can contribute to the excellent MOR and DMFC performance. This review paper summaries the development of the above alloys and support materials related to reduce the usage of Pt, improve stability, and better electrocatalytic performance of Pt in DMFC. Finally, discussion of each catalyst and support in terms of morphology, electrocatalytic activity, structural characteristics, and its fuel cell performance are presented.
机译:铂(Pt)基纳米颗粒金属受到了广泛关注,并且是直接甲醇燃料电池(DMFC)的最流行催化剂。然而,Pt催化剂的高成本,缓慢的动力学氧化以及在甲醇氧化反应(MOR)期间形成CO中间分子是与单金属Pt催化剂相关的主要挑战。最近的研究集中于使用Pt合金(例如Fe,Ni,Co,Rh,Ru,Co和Sn金属)或碳载体材料来增强Pt的催化性能。近年来,以碳纳米管,碳纳米管,碳纳米管,碳纳米管,碳纳米管,CMS,碳纳米管,碳黑和石墨烯等碳材料的巨大潜力为支撑的铂和铂合金催化剂,由于其卓越的性能可为获得优异的MOR做出贡献,因此受到了广泛关注。和DMFC的性能。本文综述了上述合金和载体材料在减少Dt中Pt的使用,提高稳定性和更好的电催化性能方面的发展。最后,讨论了每种催化剂和载体的形态,电催化活性,结构特征及其燃料电池性能。

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