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用于能源收集的涉及氧的异相电催化中的新兴材料。

Emerging Materials in Heterogeneous Electrocatalysis Involving Oxygen for Energy Harvesting.

机构信息

IMDEA Materials Institute , C/Eric Kandel 2, Parque de Tecnogetafe , Getafe 28906 , Spain.

Department of Chemical Sciences , Indian Institute of Science Education and Research-Mohali , Sector 81 , Mohali, SAS Nagar , Punjab 140306 , India.

出版信息

ACS Appl Mater Interfaces. 2018 Oct 10;10(40):33737-33767. doi: 10.1021/acsami.8b09024. Epub 2018 Oct 1.

Abstract

Water-based renewable energy cycle involved in water splitting, fuel cells, and metal-air batteries has been gaining increasing attention for sustainable generation and storage of energy. The major challenges in these technologies arise due to the poor kinetics of the oxygen reduction reaction (ORR) and the oxygen evolution reactions (OER), besides the high cost of the catalysts. Attempts to address these issues have led to the development of many novel and inexpensive catalysts as well as newer mechanistic insights, particularly so in the last three-four years when more catalysts have been investigated than ever before. With the growing emphasis on bifunctionality, that is, materials that can facilitate both reduction and evolution of oxygen, this review is intended to discuss all major families of ORR, OER, and bifunctional catalysts such as metals, alloys, oxides, other chalcogenides, pnictides, and metal-free materials developed during this period in a single platform, while also directing the readers to specific and detailed review articles dealing with each family. In addition, each section highlights the latest theoretical and experimental insights that may further improve ORR/OER performances. The bifunctional catalysts being sufficiently new, no consensus appears to have emerged about the efficiencies. Therefore, a statistical analysis of their performances by considering nearly all literature reports that have appeared in this period is presented. The current challenges in rational design of these catalysts as well as probable strategies to improve their performances are presented.

摘要

水基可再生能源循环涉及水分解、燃料电池和金属空气电池,因其可持续地产生和储存能源而受到越来越多的关注。这些技术的主要挑战源于氧气还原反应(ORR)和氧气析出反应(OER)的动力学性能较差,以及催化剂成本高。为了解决这些问题,人们尝试开发了许多新型且廉价的催化剂,并对其反应机制有了更深入的了解,尤其是在过去三四年,人们对更多的催化剂进行了研究。随着对双功能催化剂(即既能促进氧气还原又能促进氧气析出的材料)的日益重视,本文旨在讨论在此期间开发的所有主要的 ORR、OER 和双功能催化剂家族,如金属、合金、氧化物、其他硫属化物、磷化物和无金属材料,同时也为读者提供了关于每个家族的具体和详细的综述文章。此外,每一节都强调了最新的理论和实验见解,这些见解可能会进一步提高 ORR/OER 的性能。由于双功能催化剂还比较新,因此似乎还没有就其效率达成共识。因此,本文通过考虑这一时期出现的几乎所有文献报告,对其性能进行了统计分析。本文还介绍了这些催化剂的合理设计所面临的当前挑战以及可能提高其性能的策略。

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