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首页> 外文期刊>Advanced energy materials >Developments and Perspectives in 3d Transition-Metal- Based Electrocatalysts for Neutral and Near-Neutral Water Electrolysis
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Developments and Perspectives in 3d Transition-Metal- Based Electrocatalysts for Neutral and Near-Neutral Water Electrolysis

机译:中性和近中性水电解的3d过渡金属基电催化剂的发展与前景

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Technology for producing highly pure hydrogen (99.999%) by water electrolysis is a field of importance in terms of the planets' current energy scenario. A much needed transition from a carbon economy to a hydrogen economy further adds importance to the field of hydrogen generation from water for a sustainable future. To avoid energy losses in the production process, the use of highly acidic (Proton Exchange Membrane (PEM) water electrolyzer) and alkaline (alkaline water electrolyzer) electrolytes is conventional practice in this field. Unfortunately, there are several other issues associated with the use of acidic and alkaline electrolytes such as the requirement of specific ion exchanging membranes with good stability, acid or alkali stable catalysts and corrosive environment withstanding cell stacks, etc. To overcome these issues, researchers have shown interest in the field of electrochemical water splitting in neutral and near-neutral conditions. In this review, the chronological development of 3d transition-metal-based electrocatalysts for neutral and near-neutral water splitting is extensively discussed with emphases on screening methodologies, mechanisms, structure-activity correlations, and detailed catalyst specific evolution. In addition, catalysts reported so far, are also benchmarked based on their performance separately for different electrolytes used.
机译:就行星当前的能源状况而言,通过水电解生产高纯度氢(99.999%)的技术是一个重要领域。从碳经济到氢经济的迫切需求进一步增加了从水产生氢的领域的可持续发展的重要性。为了避免生产过程中的能量损失,该领域的常规做法是使用高酸性(质子交换膜(PEM)水电解槽)和碱性(碱性水电解槽)电解液。不幸的是,酸性和碱性电解质的使用还存在其他一些问题,例如需要具有良好稳定性的特定离子交换膜,酸或碱稳定的催化剂以及能承受电池堆腐蚀的环境等。为了克服这些问题,研究人员已经在中性和近中性条件下的电化学水分解领域中表现出了浓厚的兴趣。在这篇综述中,针对中性和近中性水分解的3d过渡金属基电催化剂的时间顺序发展进行了广泛讨论,重点是筛选方法,机理,结构活性相关性和详细的催化剂特定演化。此外,迄今为止报道的催化剂也根据其性能分别针对所使用的不同电解质进行了基准测试。

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