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Clean and Affordable Hydrogen Fuel from Alkaline Water Splitting: Past, Recent Progress, and Future Prospects

机译:来自碱性水分裂的清洁和实惠的氢气:过去,最近的进展和未来的前景

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摘要

Hydrogen economy has emerged as a very promising alternative to the current hydrocarbon economy, which involves the process of harvesting renewable energy to split water into hydrogen and oxygen and then further utilization of clean hydrogen fuel. The production of hydrogen by water electrolysis is an essential prerequisite of the hydrogen economy with zero carbon emission. Among various water electrolysis technologies, alkaline water splitting has been commercialized for more than 100 years, representing the most mature and economic technology. Here, the historic development of water electrolysis is overviewed, and several critical electrochemical parameters are discussed. After that, advanced nonprecious metal electrocatalysts that emerged recently for negotiating the alkaline oxygen evolution reaction (OER) and hydrogen evolution reaction (HER) are discussed, including transition metal oxides, (oxy)hydroxides, chalcogenides, phosphides, and nitrides for the OER, as well as transition metal alloys, chalcogenides, phosphides, and carbides for the HER. In this section, particular attention is paid to the catalyst synthesis, activity and stability challenges, performance improvement, and industry-relevant developments. Some recent works about scaled-up catalyst synthesis, novel electrode designs, and alkaline seawater electrolysis are also spotlighted. Finally, an outlook on future challenges and opportunities for alkaline water splitting is offered, and potential future directions are speculated.
机译:氢经济被出现为目前碳氢化合物经济的一个非常有前途的替代品,这涉及收获可再生能量以将水分成氢气和氧气的过程,然后进一步利用清洁的氢气。通过水电解生产氢是氢气发射氢经济性的必要先决条件。在各种水电解理技术中,碱性水分裂已被商业化100多年,代表最成熟和经济技术。这里,概述了水电解的历史发展,并且讨论了几个关键电化学参数。之后,讨论最近出现的高级非佛得多的金属电催化剂,用于讨论碱性氧气进化反应(OER)和氢进化反应(她),包括过渡金属氧化物,氢氧化物,硫代胺,磷化物和亚硝化物,以及过渡金属合金,硫属元素化物,磷化物和她的碳化物。在本节中,特别关注催化剂合成,活动和稳定性挑战,性能改善和行业相关的发展。最近有关缩放催化剂合成,新型电极设计和碱性海水电解的一些作品也被分析。最后,提供了对未来挑战和碱性水分裂机会的看法,并推测潜在的未来方向。

著录项

  • 来源
    《Advanced Materials》 |2021年第31期|2007100.1-2007100.35|共35页
  • 作者单位

    Univ Sci & Technol China Hefei Comprehens Natl Sci Ctr Inst Biomimet Mat & Chem CAS Ctr Excellence Nanos Dept Chem Hefei Natl Lab Phy Sci Microscale Inst Hefei Peoples R China;

    Univ Sci & Technol China Hefei Comprehens Natl Sci Ctr Inst Biomimet Mat & Chem CAS Ctr Excellence Nanos Dept Chem Hefei Natl Lab Phy Sci Microscale Inst Hefei Peoples R China;

    Univ Sci & Technol China Hefei Comprehens Natl Sci Ctr Inst Biomimet Mat & Chem CAS Ctr Excellence Nanos Dept Chem Hefei Natl Lab Phy Sci Microscale Inst Hefei Peoples R China;

    Univ Sci & Technol China Hefei Comprehens Natl Sci Ctr Inst Biomimet Mat & Chem CAS Ctr Excellence Nanos Dept Chem Hefei Natl Lab Phy Sci Microscale Inst Hefei Peoples R China;

    Univ Sci & Technol China Hefei Comprehens Natl Sci Ctr Inst Biomimet Mat & Chem CAS Ctr Excellence Nanos Dept Chem Hefei Natl Lab Phy Sci Microscale Inst Hefei Peoples R China;

    Univ Sci & Technol China Hefei Comprehens Natl Sci Ctr Inst Biomimet Mat & Chem CAS Ctr Excellence Nanos Dept Chem Hefei Natl Lab Phy Sci Microscale Inst Hefei Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    alkaline water splitting; hydrogen energy; hydrogen evolution; oxygen evolution;

    机译:碱性水分裂;氢能量;氢气进化;氧气进化;

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