Monika Singh, Hari Mohan Sharma, Ram K. Gupta, Anuj Kumar
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引用次数: 0
摘要
直接甲醇燃料电池(DMFC)具有工作温度低、效率高、能量密度大等优点,是小型电子设备和汽车极有前途的替代电源。甲醇氧化过程(MOR)是发生在 DMFC 正极的基本化学反应。铂基材料是 DMFC 中广泛使用的 MOR 电催化剂。然而,反应速率缓慢、生产成本高昂(主要归因于昂贵的铂基催化剂)以及 CO 中毒对铂催化剂的不利影响等各种挑战阻碍了 DMFC 的商业化。因此,努力寻找铂基催化剂的替代催化剂,以减轻这些缺点,成为 DMFC 研究的一个关键焦点。为了实现这一目标,研究人员开发了各种类型的 MOR 电催化剂,包括从贵金属和非贵金属中提取的催化剂。本综述深入探讨了 MOR 的基本概念及其运行机制,以及贵金属和非贵金属电催化剂(如单原子催化剂和分子催化剂)的最新进展。此外,还全面分析了 MOR 电催化剂的限制因素和前景,包括基于贵金属和非贵金属的催化剂。
Recent advancements and prospects in noble and non-noble electrocatalysts for materials methanol oxidation reactions
The direct methanol fuel cell (DMFC) represents a highly promising alternative power source for small electronics and automobiles due to its low operating temperatures, high efficiency, and energy density. The methanol oxidation process (MOR) constitutes a fundamental chemical reaction occurring at the positive electrode of a DMFC. Pt-based materials serve as widely utilized MOR electrocatalysts in DMFCs. Nevertheless, various challenges, such as sluggish reaction rates, high production costs primarily attributed to the expensive Pt-based catalyst, and the adverse effects of CO poisoning on the Pt catalysts, hinder the commercialization of DMFCs. Consequently, endeavors to identify an alternative catalyst to Pt-based catalysts that mitigate these drawbacks represent a critical focal point of DMFC research. In pursuit of this objective, researchers have developed diverse classes of MOR electrocatalysts, encompassing those derived from noble and non-noble metals. This review paper delves into the fundamental concept of MOR and its operational mechanisms, as well as the latest advancements in electrocatalysts derived from noble and non-noble metals, such as single-atom and molecule catalysts. Moreover, a comprehensive analysis of the constraints and prospects of MOR electrocatalysts, encompassing those based on noble metals and those based on non-noble metals, has been undertaken.
期刊介绍:
Nanoscale Research Letters (NRL) provides an interdisciplinary forum for communication of scientific and technological advances in the creation and use of objects at the nanometer scale. NRL is the first nanotechnology journal from a major publisher to be published with Open Access.