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Recent advances in developing high-performance nanostructured electrocatalysts based on 3d transition metal elements

机译:基于3D过渡金属元素开发高性能纳米结构电催化剂的最新进展

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摘要

Electrocatalysis for clean energy conversion,including water splitting(hydrogen and oxygen evolution)and oxygen reduction,has been considered as a pivotal strategy to alleviate the increasing energy crisis and environmental pollution derived from the overuse of nonrenewable fossil fuels.Since the current electrocatalysts are usually based on high-cost and scarce noble metal elements(Pt,Ru,and Ir),developing low-cost and earth-abundant catalysts is of great practical promise for realizing industry-scale applications.In this regard,electrocatalysts based on 3d transition metal elements(Mn,Fe,Co,and Ni,etc.)have been proposed as a class of prospective materials due to their abundance and high activity.In this work,recent advances in developing high-performance nanostructured electrocatalysts for sustainable clean energy conversion are briefly reviewed,with a particular focus on morphology design,composition tuning,surface engineering and metal coordination symmetry/geometry control.The latest studies indicate that carefully designed nanostructures based on 3d transition metal elements can attain comparable electrocatalytic performance to the commercial noble metal-based counterparts.This review may offer new insights into the rational design of nanostructures with further improved electrocatalytic activity and pathway selectivity to achieve the ultimate goal of realizing renewable electrochemical energy conversion.
机译:用于清洁能量转换的电催化,包括水分裂(氢气和氧气进化)和氧还原,被认为是缓解越来越多的能源危机和环境污染,从过量使用的不可再生化石燃料中获得的枢转策略。通常电流电催化剂通常基于高成本和稀缺的贵金属元素(Pt,Ru和IR),开发低成本和地球丰富的催化剂对于实现行业规模应用具有很大的实用性承诺。在这方面,基于3D过渡金属的电催化剂元素(Mn,Fe,Co和Ni等)已被提出作为一类潜在的材料,因为它们丰富和高活动导致了一类未来的材料。在这项工作中,近期开发高性能纳米结构电催化剂进行可持续清洁能量转换的进展简要审查,特别关注形态设计,组成调整,表面工程和金属协调对称/几何控制.LA测试研究表明,基于3D过渡金属元素的仔细设计的纳米结构可以对商业贵金属的对应物达到相当的电催化性能。这一综述可以为纳米结构的合理设计提供新的见解,进一步改善的电催化活性和途径选择性来实现实现可再生电化学能量转换的最终目标。

著录项

  • 来源
    《Nanoscale Horizons》 |2019年第4期|共20页
  • 作者单位

    International Center for Materials Nanoarchitectonics(WPI-MANA) National Institute for Materials Science(NIMS) Namiki 1-1 Tsukuba Ibaraki 305-0044 Japan;

    State Key Laboratory of Powder Metallurgy and School of Materials Science and Engineering Central South University Changsha Hunan 410083 P.R.China;

    School of Minerals Processing and Bioengineering Central South University Changsha Hunan 410083 P.R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子物理学、原子物理学;工程材料学;
  • 关键词

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