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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Anisotropic metal nanoparticles: Synthesis, assembly, and optical applications
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Anisotropic metal nanoparticles: Synthesis, assembly, and optical applications

机译:各向异性金属纳米粒子:合成,组装和光学应用

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This feature article highlights work from the authors' laboratories on the synthesis, assembly, reactivity, and optical applications of metallic nanoparticles of nonspherical shape, especially nanorods. The synthesis is a seed-mediated growth procedure, in which metal salts are reduced initially with a strong reducing agent, in water, to produce similar to 4 nm seed particles. Subsequent reduction of more metal salt with a weak reducing agent, in the presence of structure-directing additives, leads to the controlled formation of nanorods of specified aspect ratio and can also yield other shapes of nanoparticles (stars, tetrapods, blocks, cubes, etc.). Variations in reaction conditions and crystallographic analysis of gold nanorods have led to insight into the growth mechanism of these materials. Assembly of nanorods can be driven by simple evaporation from solution or by rational design with molecular-scale connectors. Short nanorods appear to be more chemically reactive than long nanorods. Finally, optical applications in sensing and imaging, which take advantage of the visible light absorption and scattering properties of the nanorods, are discussed.
机译:这篇专题文章重点介绍了作者实验室在非球形金属纳米颗粒(尤其是纳米棒)的合成,组装,反应性和光学应用方面的工作。合成是种子介导的生长过程,其中金属盐首先在水中用强还原剂还原,以产生类似于4 nm的种子颗粒。在存在结构导向添加剂的情况下,随后用弱还原剂还原更多的金属盐,可以控制形成具有特定长径比的纳米棒,并且还可以产生其他形状的纳米颗粒(星形,四足形,块状,立方体等) )。金纳米棒的反应条件和晶体学分析的变化导致人们洞察了这些材料的生长机理。纳米棒的组装可以通过从溶液中简单蒸发来实现,也可以通过分子尺度连接器的合理设计来实现。短的纳米棒似乎比长的纳米棒更具化学反应性。最后,讨论了利用纳米棒的可见光吸收和散射特性在传感和成像中的光学应用。

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