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Light-Mediated Growth of Noble Metal Nanostructures (Au Ag Cu Pt Pd Ru Ir Rh) From Micro- and Nanoscale ZnO Tetrapodal Backbones

机译:从微米级和纳米级ZnO四脚架骨架的光介导生长贵金属纳米结构(AuAgCuPtPdRuIrRh)

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摘要

Micro- and nanoscale ZnO tetrapods provide an attractive support for metallic nanostructures since they can be inexpensively produced using the flame transport method and nanoparticle synthesis schemes can take advantage of a coupled response facilitated by the formation of a semiconductor-metal interface. Here, we present a light-mediated solution-based growth mode capable of decorating the surface of ZnO tetrapods with nanostructures of gold, silver, copper, platinum, palladium, ruthenium, iridium, and rhodium. It involves two coupled reactions that are driven by the optical excitation of electron-hole pairs in the ZnO semiconductor by ultraviolet photons where the excited electrons are used to reduce aqueous metal ions onto the ZnO tetrapod as excited holes are scavenged from the surface. For the most part, the growth mode gives rise to nanoparticles with a roundish morphology that are uniformly distributed on the tetrapod surface. Larger structures with irregular shapes are, however, obtained for syntheses utilizing aqueous metal nitrates as opposed to chlorides, a result that suggests that the anion plays a role in shape determination. It is also demonstrated that changes to the molarity of the metal ion can influence the nanostructure nucleation rate. The catalytic activity of tetrapods decorated with each of the eight metals is assessed using the reduction of 4-nitrophenol by borohydride as a model reaction where it is shown that those decorated with Pd, Ag, and Rh are the most active.
机译:微米级和纳米级的ZnO四脚架为金属纳米结构提供了有吸引力的支撑,因为它们可以使用火焰传输方法廉价地生产,并且纳米粒子合成方案可以利用形成半导体-金属界面促进的耦合响应。在这里,我们提出了一种光介导的基于溶液的生长模式,该模式能够修饰具有金,银,铜,铂,钯,钌,铱和铑的纳米结构的ZnO四足动物的表面。它涉及两个耦合反应,这两个耦合反应是由紫外光子对ZnO半导体中的电子-空穴对进行光学激发而驱动的,其中,被激发的电子被用来将水金属离子还原到ZnO四脚架上,因为被激发的空穴从表面清除了。在大多数情况下,生长模式会产生具有圆形形态且均匀分布在四脚架表面上的纳米颗粒。然而,使用含水金属硝酸盐而不是氯化物获得了具有不规则形状的较大结构用于合成,结果表明该阴离子在形状确定中起作用。还证明了金属离子摩尔浓度的变化会影响纳米结构成核速率。用硼氢化物还原4-硝基苯酚作为模型反应,评估了用八种金属修饰的四足动物的催化活性,结果表明,用Pd,Ag和Rh修饰的那些最具活性。

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