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Engineering Self-Supported Noble Metal Foams Toward Electrocatalysis and Beyond

机译:工程自支撑贵金属泡沫的电催化作用及超越

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摘要

Noble metals, despite their expensiveness, display irreplaceable roles in widespread fields. To acquire novel physicochemical properties and boost the performance-to-price ratio for practical applications, one core direction is to engineer noble metals into nanostructured porous networks. Noble metal foams (NMFs), featuring self-supported, 3D interconnected networks structured from noble-metal-based building blocks, have drawn tremendous attention in the last two decades. Inheriting structural traits of foams and physicochemical properties of noble metals, NMFs showcase a variety of interesting properties and impressive prospect in diverse fields, including electrocatalysis, heterogeneous catalysis, surface-enhanced Raman scattering, sensing and actuation, etc. A number of NMFs have been created and versatile synthetic approaches have been developed. However, because of the innate limitation of specific methods and the insufficient understanding of formation mechanisms, flexible manipulation of compositions, structures, and corresponding properties of NMFs are still challenging. Thus, the correlations between composition/structure and properties are seldom established, retarding material design/optimization for specific applications. This review is devoted to a comprehensive introduction of NMFs ranging from synthesis to applications, with an emphasis on electrocatalysis. Challenges and opportunities are also included to guide possible research directions in this field and promote the interest of interdisciplinary scientists.
机译:贵金属尽管价格昂贵,但在广泛的领域中发挥着不可替代的作用。为了获得新颖的理化特性并提高实际应用的性能价格比,一个核心方向是将贵金属工程化为纳米结构的多孔网络。贵金属泡沫(NMF)具有自支撑的3D互连网络,这些网络由基于贵金属的构建基块构成,在过去的二十年中引起了极大的关注。 NMF继承了泡沫的结构特征和贵金属的物理化学特性,在电催化,非均相催化,表面增强拉曼散射,传感和驱动等各个领域展示了各种有趣的特性和令人印象深刻的前景。创造了多种用途的合成方法。但是,由于特定方法的先天局限性以及对形成机理的了解不足,因此灵活地操纵NMF的组成,结构和相应特性仍然是一项挑战。因此,很少建立成分/结构与性能之间的相关性,从而阻碍了针对特定应用的材料设计/优化。这篇综述专门介绍了从合成到应用的NMF的全面介绍,重点是电催化。挑战和机遇也包括在内,以指导该领域可能的研究方向,并促进跨学科科学家的兴趣。

著录项

  • 来源
    《Advanced energy materials》 |2020年第11期|1901945.1-1901945.30|共30页
  • 作者

  • 作者单位

    Tech Univ Dresden Phys Chem Bergstr 66b D-01062 Dresden Germany;

    Tech Univ Dresden Phys Chem Bergstr 66b D-01062 Dresden Germany|Zhejiang Univ Dept Polymer Sci & Engn Hangzhou 310027 Zhejiang Peoples R China;

    Helmholtz Zentrum Dresden Rossendorf Inst Ion Beam Phys & Mat Res Bautzner Landstr 400 D-01328 Dresden Germany;

    Wenzhou Univ Coll Chem & Mat Engn Wenzhou 325000 Peoples R China;

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

    aerogels; electrocatalysis; foams; nanostructures; noble metals;

    机译:气凝胶电催化泡沫;纳米结构贵金属;

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