首页> 外文期刊>International journal of hydrogen energy >Electrodeposition of Ni-Fe-Mn ternary nanosheets as affordable and efficient electrocatalyst for both hydrogen and oxygen evolution reactions
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Electrodeposition of Ni-Fe-Mn ternary nanosheets as affordable and efficient electrocatalyst for both hydrogen and oxygen evolution reactions

机译:Ni-Fe-Mn三元纳米片的电沉积作为氢气和氧气进化反应的负担得起和有效的电催化剂

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摘要

The synthesis of high performance and economical electrocatalysts in the process of overall water splitting is very important for the production of hydrogen energy and has become one of the most important challenges. Here, various Ni, Ni-Fe, Ni-Mn nanosheets and Ni-Fe-Mn ternary nanosheets were created using cost-effective, versatile and binder-free electrochemical deposition methods, and the electrocatalytic activity of various electrodes for hydrogen evolution reaction (HER) and oxygen evolution reaction (OER) were investigated in an alkaline environment Due to the high electrochemical active surface area due to the fabrication of nanosheets, the synergistic effect between different elements on the electronic structure, the high wettability due to the formation of nanosheets and the quick detachment of formed gasses from the electrode, the Ni-Fe-Mn nanosheets electrode showed excellent electrocatalytic activity. In order to deliver the 10 mA cm~(-2) current density in HER and OER processes, this electrode required values of 64 mV and 230 mV overpotential, respectively. Also, the stability test showed that after 10 h of electrolysis at a current density of 100 mA cm~(-2), the overpotential changes was very small (less than 4%), indicating that the electrode was excellent electrostatic stability. Also, when using as a bi-functional electrode in the full water splitting system, it only needed a cell voltage of 1528 V to deliver a current of 10 mA cm~(-2). The results of this study indicate a new strategy for the synthesis of active and stable electrocatalysts.
机译:在整个水分裂过程中的高性能和经济性电催化剂的合成对于氢能的生产非常重要,并且已成为最重要的挑战之一。这里,使用具有成本效益的通用和无粘合剂的电化学沉积方法,以及用于氢进化反应的各种电极的电催化活性来产生各种Ni,Ni-Fe,Ni-Mn纳米片和Ni-Fe-Mn纳米蛋白酶(她)在碱性环境中研究了氧气进化反应(oer)由于纳米晶片的制造,在电子结构上的不同元件之间的协同效应,由于纳米晶片形成而产生的高润湿性Ni-Fe-Mn纳米晶片电极的形成气体快速脱离,Ni-Fe-Mn纳米晶片电极显示出优异的电催化活性。为了在她和OER过程中提供10 mA cm〜(-2)电流密度,该电极分别需要64 mV和230 mV过电位的值。而且,稳定性试验表明,在电流密度为100mA cm〜(-2)的电解后,过电位变化非常小(小于4%),表明电极是优异的静电稳定性。此外,当在全水分裂系统中用作双功能电极时,它只需要1528V的电池电压以提供10 mA cm〜(-2)的电流。该研究的结果表明了合成活性和稳定电催化剂的新策略。

著录项

  • 来源
    《International journal of hydrogen energy》 |2020年第46期|24670-24683|共14页
  • 作者单位

    School of Forestry Henan Agricultural Uniuersity Zhengzhou 450002 China School of Enuironmental Studies China Uniuersity of Geosciences Wuhan 430074 China;

    School of Forestry Henan Agricultural Uniuersity Zhengzhou 450002 China;

    Institute of Research and Deuelopment Duy Tan Uniuersity Da Nang 550000 Viet Nam;

    School of Forestry Henan Agricultural Uniuersity Zhengzhou 450002 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hydrogen evolution reaction; Nanosheets; Oxygen evolution reaction;

    机译:氢气进化反应;nanosheets;氧气进化反应;

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