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Gold and silver nanoparticles: synthesis, characterization and functional properties

机译:金和银纳米粒子:合成,表征和功能特性

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摘要

This thesis focuses on the shape-controlled metal nanoparticles for functional applications, covering the synthesis, characterization and optical properties. Three parts are mainly involved in this work, including, gold worm-like nanoparticles, silver nanoplates, and silver induced selenium nanowires. The first part focuses on a facile synthesis method for shape control of gold nanoparticles by treating an aqueous solution of chloroauric acid with sodium citrate and poly(vinyl pyrrolidone) (PVP), in which those worm-like nanoparticles were investigated by various advanced experimental characterizations combining density function theory (DFT) calculation. These nanoparticles can be used for optical sensing detection of ions in aqueous system. The second part involves the synthesis, growth, and optical properties of silver nanoplates (triangles and circular discs). Such nanoplates could be synthesized by a self-seeding co-reduction method at ambient conditions. In particular, molecular dynamics simulation is used to quantify the interaction energies between surfactant molecules and different facets of silver crystal. Such molecular information, together with measurements using x-ray diffraction (XRD), transmission electron microscopy (TEM), atomic force microscopy (AFM) and ultraviolet–visible (UV–vis) spectroscopy, has proven to be useful for understanding the growth mechanisms of silver nanoplates. The third part focuses on the template of silver nanoparticles for generating trigonal selenium (t-Se) nanowires. This technique exhibits some advantages in fabricating t-Se nanostructures, including no need to use stabilizers and sonichemical process and all operations being proceeded in aqueous media and at room temperature. Particularly it can successfully achieve the transformation from amorphous α-Se to crystalline t-Se in aqueous solution and this method would be useful for generating one-dimensional nanostructures with similar lattice parameter(s). It is considered that the technique for the shape-controlled metal nanoparticles can at least partially, be extended to other nanomaterials for functional applications.
机译:本文主要研究功能控制的形状可控的金属纳米粒子,涵盖了合成,表征和光学性质。这项工作主要涉及三个部分,包括金蠕虫状纳米颗粒,银纳米板和银诱导的硒纳米线。第一部分着重介绍了一种简单的合成方法,该方法通过用柠檬酸钠和聚乙烯吡咯烷酮(PVP)处理氯金酸的水溶液来控制金纳米颗粒的形状,其中通过各种高级实验表征研究了这些蠕虫状纳米颗粒。结合密度函数理论(DFT)计算。这些纳米粒子可用于光学检测水溶液系统中的离子。第二部分涉及银纳米板(三角形和圆盘)的合成,生长和光学性质。这样的纳米板可以在环境条件下通过自种共还原方法合成。特别地,使用分子动力学模拟来量化表面活性剂分子与银晶体不同面之间的相互作用能。此类分子信息以及使用X射线衍射(XRD),透射电子显微镜(TEM),原子力显微镜(AFM)和紫外可见(UV-vis)光谱进行的测量已被证明有助于理解生长机理银纳米板。第三部分重点介绍了用于生成三角硒(t-Se)纳米线的银纳米颗粒的模板。这项技术在制造t-Se纳米结构方面显示出一些优势,包括无需使用稳定剂和声化学工艺,并且所有操作均在水性介质中和室温下进行。特别地,它可以成功地实现从水溶液中的非晶态α-Se到晶体t-Se的转变,该方法对于产生具有相似晶格参数的一维纳米结构将是有用的。据认为,用于形状控制的金属纳米颗粒的技术可以至少部分地扩展到用于功能应用的其他纳米材料。

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