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Controlled Synthesis of Nanoscale Icosahedral Gold Particles at Room Temperature

机译:在室温下对纳米级IcosaheDral金颗粒的控制合成

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摘要

The shape of nanocrystals determines surface atomic arrangement and coordination, influencing their chemical and physical properties. We present a novel and facile approach to synthesize gold icosahedra by employing glucose as reducing reagent and sodium dodecyl sulfate as directing agent in the environmentally benign medium of water at room temperature. The size of the icosahedra can be controlled in the range of 30250 nm by altering reaction conditions. High-resolution microscopy and diffraction studies indicate the icosahedra are composed of rotational twins that owe likely to assemblage of tetrahedral units. The gold icosahedra particles catalytic properties are probed in the borohydride reduction of p-nitrophenols and exhibit a size-dependence reaction property. Comparison studies with spherical particles prepared by the Turkevich method, coupled with poisoning experiments, infer that the shape has a strong influence in the abundance of active surface sites as well as their activities. The properties of nanoscale icosahedra particles has promising applications for further catalytic processes, surface enhancement spectroscopic methods, chemical or biological sensing, and the fabrication of nanoscale devices.
机译:纳米晶体的形状决定了表面原子布置和协调,影响其化学和物理性质。我们提出了一种新颖的和容易的方法来通过使用葡萄糖作为还原剂和十二烷基硫酸钠作为在室温下的环境良好的水中的引导剂中合成金ICOSahedra。通过改变反应条件,可以在30250nm的范围内控制ICOSahedra的尺寸。高分辨率显微镜和衍射研究表明,ICOSAHEDRA由逆向双胞胎组成,欠可能对四面体单位组合的旋转双胞胎。金Icosahedra颗粒催化性质催化性质在硼氢化物还原的对硝基苯酚的还原中,并表现出尺寸依赖性反应性。通过由TureTevich方法制备的球形颗粒的比较研究,与中毒实验相结合,推断形状对活性表面位点的丰富影响以及其活性。纳米级Icosahedra颗粒的性质具有前途的应用,用于进一步催化方法,表面增强光谱方法,化学或生物传感以及纳米级装置的制造。

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