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基于石墨烯的纳米材料作为先进电催化剂在氧还原反应方面的最新进展。

Recent progress in graphene-based nanomaterials as advanced electrocatalysts towards oxygen reduction reaction.

机构信息

State Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, China.

出版信息

Nanoscale. 2013 Mar 7;5(5):1753-67. doi: 10.1039/c2nr33839d. Epub 2013 Jan 30.

Abstract

Development of state-of-the-art electrocatalysts with inexpensive and commercially available materials to facilitate sluggish cathodic oxygen reduction reaction (ORR) is a key issue in the development of fuel cells and other electrochemical energy devices. Although great progress has been achieved in this area of research and development, there are still some challenges in both their ORR activity and stability. The emergence of graphene (GN) provides an excellent alternative to electrode materials and great efforts have been made to utilize GN-based nanomaterials as promising electrode materials for ORR due to the high electrical conductivity, large specific surface area, profuse interlayer structure and abounding functional groups involved. It should be noted that rational design of these GN-based nanomaterials with well-defined morphology also plays an important role in their electrochemical performance for ORR. Considerable attempts were achieved to construct a variety of heteroatom doped GN nanomaterials or GN-based nanocomposites, aiming at fully using their excellent properties in their application in ORR. In this critical review, in line with the material design and engineering, some recent advancements in the development of GN-based electrocatalysts for ORR in electrochemical energy devices (fuel cells and batteries) are then highlighted, including heteroatom-doped GN nanomaterials, GN-based nonprecious hybrid nanocomposites (GN/metal oxides, GN/N-M, GN/carbon nitride, etc.) and GN/noble metal nanocomposites.

摘要

开发具有成本效益且可商购的材料的最先进电催化剂,以促进缓慢的阴极氧还原反应(ORR)是燃料电池和其他电化学能量装置发展的关键问题。尽管在这一研究和开发领域取得了巨大进展,但在其 ORR 活性和稳定性方面仍存在一些挑战。石墨烯(GN)的出现为电极材料提供了极好的替代品,由于其高导电性、大比表面积、丰富的层间结构和丰富的官能团,人们努力利用基于 GN 的纳米材料作为有前途的 ORR 电极材料。需要注意的是,这些具有明确定型形态的基于 GN 的纳米材料的合理设计对于其 ORR 的电化学性能也起着重要作用。人们已经尝试构建了各种杂原子掺杂的 GN 纳米材料或基于 GN 的纳米复合材料,旨在充分利用它们在 ORR 应用中的优异性能。在这篇评论中,根据材料设计和工程,重点介绍了电化学能量装置(燃料电池和电池)中用于 ORR 的基于 GN 的电催化剂的一些最新进展,包括杂原子掺杂的 GN 纳米材料、基于 GN 的非贵金属混合纳米复合材料(GN/金属氧化物、GN/N-M、GN/碳氮化物等)和 GN/贵金属纳米复合材料。

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