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一种制备用于全水分裂的高效且经济的催化电极的策略。

A strategy for preparing high-efficiency and economical catalytic electrodes toward overall water splitting.

作者信息

Yao Dongxue, Gu Lingling, Zuo Bin, Weng Shuo, Deng Shengwei, Hao Weiju

机构信息

University of Shanghai for Science and Technology, Shanghai 200093, P. R. China.

出版信息

Nanoscale. 2021 Jun 28;13(24):10624-10648. doi: 10.1039/d1nr02307a. Epub 2021 Jun 16.

Abstract

Electrolyzing water technology to prepare high-purity hydrogen is currently an important field in energy development. However, the preparation of efficient, stable, and inexpensive hydrogen production technology from electrolyzed water is a major problem in hydrogen energy production. The key technology for hydrogen production from water electrolysis is to prepare highly efficient catalytic, stable and durable electrodes, which are used to reduce the overpotential of the hydrogen evolution reaction and the oxygen evolution reaction of electrolyzed water. The main strategies for preparing catalytic electrodes include: (i) choosing cheap, large specific surface area and stable base materials, (ii) modulating the intrinsic activity of the catalytic material through elemental doping and lattice changes, and (iii) adjusting the morphology and structure to increase the catalytic activity. Based on these findings, herein, we review the recent work in the field of hydrogen production by water electrolysis, introduce the preparation of catalytic electrodes based on nickel foam, carbon cloth and new flexible materials, and summarize the catalytic performance of metal oxides, phosphides, sulfides and nitrides in the hydrogen evolution and oxygen evolution reactions. Secondly, parameters such as the overpotential, Tafel slope, active site, turnover frequency, and stability are used as indicators to measure the performance of catalytic electrode materials. Finally, taking the material cost of the catalytic electrode as a reference, the successful preparations are comprehensively compared. The overall aim is to shed some light on the exploration of high-efficiency and economical electrodes in energy chemistry and also demonstrate that there is still room for discovering new combinations of electrodes including base materials, composition lattice changes and morphologies.

摘要

电解水制高纯度氢气技术是当前能源开发的一个重要领域。然而,从电解水制备高效、稳定且廉价的制氢技术是氢能生产中的一个主要问题。水电解制氢的关键技术是制备高效催化、稳定且耐用的电极,用于降低电解水析氢反应和析氧反应的过电位。制备催化电极的主要策略包括:(i)选择廉价、大比表面积且稳定的基底材料;(ii)通过元素掺杂和晶格变化调节催化材料的本征活性;(iii)调整形貌和结构以提高催化活性。基于这些发现,在此我们综述了水电解制氢领域的近期工作,介绍了基于泡沫镍、碳布和新型柔性材料的催化电极制备方法,并总结了金属氧化物、磷化物、硫化物和氮化物在析氢和析氧反应中的催化性能。其次,将过电位、塔菲尔斜率、活性位点、转换频率和稳定性等参数作为指标来衡量催化电极材料的性能。最后,以催化电极的材料成本为参考,对成功的制备方法进行综合比较。总体目标是为能源化学中高效且经济的电极探索提供一些启示,同时也表明在发现包括基底材料、组成晶格变化和形貌在内的电极新组合方面仍有空间。

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