Nanoporous Gold: From Structure Evolution to Functional Properties in Catalysis and Electrochemistry

电催化剂 纳米孔 化学 催化作用 纳米技术 多相催化 溶解 部分氧化 电化学 有机化学 材料科学 物理化学 电极
作者
Günther Wittstock,Marcus Bäumer,Wilke Dononelli,Thorsten Klüner,Lukas Lührs,Christoph Mahr,Lyudmila V. Moskaleva,Mehtap Oezaslan,Thomas Risse,Andreas Rosenauer,Anne Staubitz,Jörg Weißmüller,Arne Wittstock
出处
期刊:Chemical Reviews [American Chemical Society]
卷期号:123 (10): 6716-6792 被引量:91
标识
DOI:10.1021/acs.chemrev.2c00751
摘要

Nanoporous gold (NPG) is characterized by a bicontinuous network of nanometer-sized metallic struts and interconnected pores formed spontaneously by oxidative dissolution of the less noble element from gold alloys. The resulting material exhibits decent catalytic activity for low-temperature, aerobic total as well as partial oxidation reactions, the oxidative coupling of methanol to methyl formate being the prototypical example. This review not only provides a critical discussion of ways to tune the morphology and composition of this material and its implication for catalysis and electrocatalysis, but will also exemplarily review the current mechanistic understanding of the partial oxidation of methanol using information from quantum chemical studies, model studies on single-crystal surfaces, gas phase catalysis, aerobic liquid phase oxidation, and electrocatalysis. In this respect, a particular focus will be on mechanistic aspects not well understood, yet. Apart from the mechanistic aspects of catalysis, best practice examples with respect to material preparation and characterization will be discussed. These can improve the reproducibility of the materials property such as the catalytic activity and selectivity as well as the scope of reactions being identified as the main challenges for a broader application of NPG in target-oriented organic synthesis.
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