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贵金属气凝胶——合成、表征及其作为电催化剂的应用。

Noble metal aerogels-synthesis, characterization, and application as electrocatalysts.

作者信息

Liu Wei, Herrmann Anne-Kristin, Bigall Nadja C, Rodriguez Paramaconi, Wen Dan, Oezaslan Mehtap, Schmidt Thomas J, Gaponik Nikolai, Eychmüller Alexander

机构信息

Physical Chemistry and Center for Advancing Electronics Dresden, TU Dresden , Bergstraße 66b, D-01069 Dresden, Germany.

出版信息

Acc Chem Res. 2015 Feb 17;48(2):154-62. doi: 10.1021/ar500237c. Epub 2015 Jan 22.

Abstract

CONSPECTUS

Metallic and catalytically active materials with high surface area and large porosity are a long-desired goal in both industry and academia. In this Account, we summarize the strategies for making a variety of self-supported noble metal aerogels consisting of extended metal backbone nanonetworks. We discuss their outstanding physical and chemical properties, including their three-dimensional network structure, the simple control over their composition, their large specific surface area, and their hierarchical porosity. Additionally, we show some initial results on their excellent performance as electrocatalysts combining both high catalytic activity and high durability for fuel cell reactions such as ethanol oxidation and the oxygen reduction reaction (ORR). Finally, we give some hints on the future challenges in the research area of metal aerogels. We believe that metal aerogels are a new, promising class of electrocatalysts for polymer electrolyte fuel cells (PEFCs) and will also open great opportunities for other electrochemical energy systems, catalysis, and sensors. The commercialization of PEFCs encounters three critical obstacles, viz., high cost, insufficient activity, and inadequate long-term durability. Besides others, the sluggish kinetics of the ORR and alcohol oxidation and insufficient catalyst stability are important reasons for these obstacles. Various approaches have been taken to overcome these obstacles, e.g., by controlling the catalyst particle size in an optimized range, forming multimetallic catalysts, controlling the surface compositions, shaping the catalysts into nanocrystals, and designing supportless catalysts with extended surfaces such as nanostructured thin films, nanotubes, and porous nanostructures. These efforts have produced plenty of excellent electrocatalysts, but the development of multisynergetic functional catalysts exhibiting low cost, high activity, and high durability still faces great challenges. In this Account, we demonstrate that the sol-gel process represents a powerful "bottom-up" strategy for creating nanostructured materials that tackles the problems mentioned above. Aerogels are unique solid materials with ultralow densities, large open pores, and ultimately high inner surface areas. They magnify the specific properties of nanomaterials to the macroscale via self-assembly, which endow them with superior properties. Despite numerous investigations of metal oxide aerogels, the investigation of metal aerogels is in the early stage. Recently, aerogels including Fe, Co, Ni, Sn, and Cu have been obtained by nanosmelting of hybrid polymer-metal oxide aerogels. We report here exclusively on mono-, bi- and multimetallic noble metal aerogels consisting of Ag, Au, Pt, and Pd and their application as electrocatalysts.

摘要

综述

具有高表面积和大孔隙率的金属及催化活性材料一直是工业界和学术界长期追求的目标。在本综述中,我们总结了制备各种由扩展金属骨架纳米网络组成的自支撑贵金属气凝胶的策略。我们讨论了它们出色的物理和化学性质,包括其三维网络结构、对其组成的简单控制、大比表面积和分级孔隙率。此外,我们展示了一些关于它们作为电催化剂的优异性能的初步结果,这些电催化剂对燃料电池反应(如乙醇氧化和氧还原反应(ORR))兼具高催化活性和高耐久性。最后,我们对金属气凝胶研究领域未来的挑战给出了一些提示。我们相信金属气凝胶是一类新型的、有前景的用于聚合物电解质燃料电池(PEFC)的电催化剂,也将为其他电化学能源系统、催化和传感器带来巨大机遇。PEFC的商业化面临三个关键障碍,即高成本、活性不足和长期耐久性不够。除其他因素外,ORR和醇氧化的缓慢动力学以及催化剂稳定性不足是这些障碍的重要原因。人们已采取各种方法来克服这些障碍,例如将催化剂粒径控制在优化范围内、形成多金属催化剂、控制表面组成、将催化剂成型为纳米晶体以及设计具有扩展表面的无载体催化剂,如纳米结构薄膜、纳米管和多孔纳米结构。这些努力已经产生了大量优异的电催化剂,但开发兼具低成本、高活性和高耐久性的多协同功能催化剂仍然面临巨大挑战。在本综述中,我们证明溶胶 - 凝胶法是一种强大的“自下而上”策略,可用于制备解决上述问题的纳米结构材料。气凝胶是具有超低密度、大开放孔隙和极高内表面积的独特固体材料。它们通过自组装将纳米材料的特定性质放大到宏观尺度,从而赋予它们优异的性能。尽管对金属氧化物气凝胶进行了大量研究,但金属气凝胶的研究仍处于早期阶段。最近,通过混合聚合物 - 金属氧化物气凝胶的纳米熔炼获得了包括Fe、Co、Ni、Sn和Cu的气凝胶。我们在此专门报道由Ag、Au、Pt和Pd组成的单金属、双金属和多金属贵金属气凝胶及其作为电催化剂的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf8d/4578670/2503b1527682/ar-2014-00237c_0009.jpg

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