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Recent developments of nano-structured materials as the catalysts for oxygen reduction reaction

机译:纳米结构材料作为氧还原反应催化剂的最新进展

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摘要

Developments of high efficient materials for electrocatalyst are significant topics of numerous researches since a few decades. Recent global interests related with energy conversion and storage lead to the expansion of efforts to find cost-effective catalysts that can substitute conventional catalytic materials. Especially, in the field of fuel cell, novel materials for oxygen reduction reaction (ORR) have been noticed to overcome disadvantages of conventional platinum-based catalysts. Various approaching methods have been attempted to achieve low cost and high electrochemical activity comparable with Pt-based catalysts, including reducing Pt consumption by the formation of hybrid materials, Pt-based alloys, and not-Pt metal or carbon based materials. To enhance catalytic performance and stability, numerous methods such as structural modifications and complex formations with other functional materials are proposed, and they are basically based on well-defined and well-ordered catalytic active sites by exquisite control at nanoscale. In this review, we highlight the development of nano-structured catalytic materials for ORR based on recent findings, and discuss about an outlook for the direction of future researches.
机译:自几十年来以来,用于电催化剂的高效材料的发展一直是众多研究的重要课题。最近与能量转换和存储相关的全球利益导致加大了寻找可替代常规催化材料的具有成本效益的催化剂的努力。特别地,在燃料电池领域中,已经注意到用于氧还原反应(ORR)的新型材料克服了常规铂基催化剂的缺点。已经尝试了各种接近Pt基催化剂的方法以实现低成本和高电化学活性,包括通过形成杂化材料,Pt基合金以及非Pt金属或碳基材料来减少Pt消耗。为了提高催化性能和稳定性,提出了许多方法,例如结构修饰和与其他功能性材料的复杂形成,并且它们基本上是基于在纳米级进行精细控制的良好定义的和有序的催化活性位。在这篇综述中,我们基于最近的发现重点介绍了用于ORR的纳米结构催化材料的发展,并讨论了未来研究方向的展望。

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