将mos2基材料扩展到催化非酸性析氢:挑战、进展和前景

Haojie Fei, Ruoqi Liu, Yunze Zhang, Hongsheng Wang, Miao Wang, Siyuan Wang, M. Ni, Zhuangzhi Wu, Jian Wang
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引用次数: 4

摘要

水裂解被认为是最有前途的绿色氢气生产方法之一。将电解水的酸性电解质转换为非酸性电解质,可以使用不含贵金属的电催化剂,减轻材料腐蚀,从而降低电解水的投资成本,提高其运行稳定性。然而,随着电解质pH的升高,由于h30o +作为反应物的浓度降低,会降低析氢反应(HER)的活性,使非酸性HER变得迟钝。为了加速HER,具有独特原子结构、低成本、高丰度等优点的mos2基材料被认为是替代Pt在酸中的有前景的电催化剂。将mos2基材料扩展到非酸性HER的催化上已经花费了大量的努力,它们的进一步发展需要澄清现有的挑战和当前的进展。然而,在mos2基电催化剂上的非酸性HER尚未得到讨论。为了减轻这种差异,我们系统地概述了非酸性HER的mos2电催化剂,包括催化机理,调制策略,材料开发,当前挑战,研究进展和展望。本文的研究成果将有助于合理设计非酸性条件下的高性能HER材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Extending MoS2-based materials into the catalysis of non-acidic hydrogen evolution: challenges, progress, and perspectives
Water splitting is regarded as among the most prospective methods of generating green hydrogen. Switching electrolytes of water electrolysis from acidic to non-acidic ones will enable the use of noble-metal-free electrocatalysts and mitigate material corrosion, thus lowering the capital cost of water electrolyzers and improving their operational stability. However, increasing electrolyte pH will degrade the hydrogen evolution reaction (HER) activity because of the reduced concentration of H3O+ as reactants, making non-acidic HER sluggish. To accelerate HER, MoS2-based materials with the advantages of unique atomistic structure, low cost, and high abundance have been considered prospective electrocatalysts to substitute for Pt in acid. Great efforts are being spent on extending MoS2-based materials into the catalysis of non-acidic HER, and their further development requires clarification of the existing challenges and current progress. However, it has not yet been discussed for non-acidic HER on MoS2-based electrocatalysts. To mitigate the disparity, we systematically overview MoS2-based electrocatalysts for non-acidic HER, covering catalytic mechanisms, modulation strategies, materials development, current challenges, research progress, and perspectives. This review will contribute to the rational design of MoS2-based materials for high-performance HER in non-acidic conditions.
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CiteScore
7.40
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