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The unusual effect of AgNO3 on the growth of Au nanostructures and their catalytic performance

机译:非盟的不寻常的硝酸银对经济增长的影响纳米结构及其催化性能

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Au nanostructures attract much attention due to their potential applications in many fields. The controlled synthesis is critical to their properties modulation and applications. AgNO3-assisted synthesis is a widely used method for controilably preparing Au nanostructures in aqueous system. Herein, the effect of AgNO3 on the growth of Au nanostructures in polyol is studied. We observe an unusual effect that AgNO3 can induce the formation of pentatwinned Au nanostructures (nanorods and decahedra) and block the growth of Au nanorods. More interestingly, this blocking effect can be tuned through controlling the amount of AgNO3. A moderate amount of AgNO3 facilitates the formation of Au nanorods. A large amount of AgNO3 completely blocks the growth of nanorods and favors the formation of high quality decahedra (decahedra can be considered as nanorods with 0 nm longitudinal length). Besides, this blocking effect also allows preparation of different high-index-faceted Au nanobipyramids. These prepared Au nanostructures further serve as starting templates to fabricate other heterostructured Au/Ag nanomaterials, such as Ag-Au-Ag segmental nanorods, Au@Ag core-shelled nanostructures. The prepared nanostructures exhibit size- and structure-dependent catalytic performance in the reduction of p-nitrophenol to p-aminophenol by sodium borohydride.
机译:Au纳米结构由于吸引了太多的关注他们在许多领域潜在的应用。控制合成对他们至关重要调制和应用程序属性。AgNO3-assisted合成是一种广泛使用的方法controilably准备Au纳米结构水系统。Au纳米结构的生长在多元醇研究。可以诱导形成pentatwinned盟吗纳米结构(纳米棒和decahedra)和块金纳米棒的生长。这种阻塞效应的强度是可以调节的控制量的硝酸银。量的硝酸银促进非盟的形成纳米棒。块纳米棒的生长和支持形成高质量的decahedra (decahedra可以被视为与0纳米纳米棒纵向长度)。效果还可以制备不同high-index-faceted盟nanobipyramids。准备Au纳米结构进一步的作为开始制作模板用Au / Ag纳米材料,如纳米结构。展览规模,structure-dependent催化在减少p-nitrophenol性能p-aminophenol硼氢化钠。

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