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Self-supported electrocatalysts for advanced energy conversion processes

机译:自支撑电催化剂,用于先进的能量转换过程

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摘要

The biggest challenge in developing new energy conversion technologies such as rechargeable metal-air batteries, regenerated fuel cells and water splitting devices is to find suitable catalysts that can efficiently and stably catalyze the key electrochemical processes involved. This paper reviews the new development of self-supported electrocatalysts in three categories: electrocatalysts growing on rigid substrates, electrocatalysts growing on soft substrates, and free-standing catalyst films. They are distinct and superior to the conventional powdery electrocatalysts, showing advantages in controllable nanostructure and chemical component, flexible electrode configuration, and outstanding catalytic performance. The self-supported electrocatalysts with various architectures like nanowire/plate/pillar arrays and porous films, composed of metals, metal oxides/selenides/phosphides, organic polymers, carbons and their corresponding hybrids, are presented and discussed. These catalysts exhibit high activity, durability and selectivity toward oxygen reduction, oxygen evolution, and/or hydrogen evolution reactions. The perspectives on the relevant areas are also proposed.
机译:开发诸如可充电金属-空气电池,再生燃料电池和水分解装置之类的新能量转换技术的最大挑战是找到合适的催化剂,这些催化剂可以有效且稳定地催化涉及的关键电化学过程。本文概述了自负载型电催化剂在三类中的新发展:在刚性基材上生长的电催化剂,在软质基材上生长的电催化剂和独立式催化剂膜。它们与常规的粉末状电催化剂截然不同且优越,在可控制的纳米结构和化学成分,灵活的电极构型以及出色的催化性能方面显示出优势。介绍并讨论了具有各种结构的自支撑电催化剂,如纳米线/板/柱阵列和多孔膜,其由金属,金属氧化物/硒化物/磷化物,有机聚合物,碳及其相应的杂化物组成。这些催化剂表现出高活性,耐久性和对氧还原,氧释放和/或氢释放反应的选择性。还提出了有关领域的观点。

著录项

  • 作者

    Ma T.Y.; Dai S.; Qiao S.Z.;

  • 作者单位
  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en
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