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Halide ion influence on the formation of nickel nanoparticles and their conversion into hollow nickel phosphide and sulphide nanocrystals

机译:卤化物离子对镍的形成的影响纳米粒子及其转换成空洞磷化镍和硫化物纳米晶体

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摘要

A dependence of the formation of tri-n-octylphosphine-capped Ni nanocrystals on the presence of halide ions during their synthesis is shown. For the application-oriented synthesis of Ni particles, this information can be crucial. Furthermore, Ni nanoparticles can be converted to nickel phosphide or sulphide by heating them up in the presence of a phosphorus or sulphur source, resulting in either solid or hollow nanocrystals, formed via the nanoscale Kirkendall effect, depending on the synthesis route. By adjusting the Ni crystallite size in the initial nanoparticles via the halide ion concentration the cavity size of the resulting hollow nanocrystals can be tuned, which is otherwise impossible to realise for particles of a similar total diameter by using this process. The synthesised hollow Ni3S2 nanocrystals exhibit a much sharper localised surface plasmon resonance (LSPR) band than all previously presented particles of this material, which is known to show molar extinction coefficients at the LSPR maximum similar to Au. This narrow linewidth could be explained by the nanoparticles' high crystallinity resulting from the Kirkendall process and is interesting for various possible optical applications such as surface-enhanced Raman spectroscopy owing to the low cost of the involved materials compared to the widely used noble metals.
机译:依赖的形成tri-n-octylphosphine-capped Ni纳米晶体在在他们的卤离子的存在合成。可以合成镍粒子,这些信息是至关重要的。转换为磷化镍或硫化物加热磷的存在或硫源,导致固体或通过纳米级中空纳米晶体,形成柯肯特尔效应,这取决于合成路线。最初通过卤化物离子纳米颗粒由此产生的空腔大小空心纳米晶体可以通过调优,这是否则不可能意识到的粒子通过使用这个过程类似的总直径。合成的空心Ni3S2纳米晶体展览局部表面等离子体要激烈的多共振(LSPR)乐队比以前提出了颗粒的材料,这是显示摩尔消光系数非盟LSPR最大相似。线宽可以解释的纳米颗粒造成的高结晶度柯肯特尔过程和很有趣各种可能的光学应用程序等表面增强拉曼光谱由于低成本的材料相比广泛使用的贵金属。

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