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Colloidal Synthesis of Air-Stable Crystalline Germanium Nanoparticles with Tunable Sizes and Shapes

机译:尺寸和形状可调的空气稳定的结晶锗纳米粒子的胶体合成

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Nanoparticles of elemental germanium have interesting optical and electronic properties and relatively low toxicity, making them attractive materials for biological and optoelectronic applications. The most common routes to colloidal Ge nanoparticles include metathesis reactions involving Zintl salts, hydride reduction of Ge halides, and thermal decomposition of organogermane precursors. Here we describe an alternative "heat-up" method for the synthesis of size- and shape-tunable Ge nanoparticles that are both crystalline and air stable. The readily available reagents Gel4, oleylamine, oleic acid, and hexamethyldi-silazane are combined in one pot and heated to 260 °C, where a rapid nucleauon event occurs and multifaceted nanoparticles of crystalline Ge form. By varying the concentration of Gel4, the nanoparticle size can be tuned from 6 to 22 nm with narrow size distributions. Adding trioctylphosphine yields cube-shaped particles, and switching the solvent to octadecene yields one-dimensional nanostructures. The Ge nanoparticles, which are fully air stable for more than 6 months, were characterized by XRD, TEM, HRTEM, EDS, XPS, DRIFT, and UV-visible spectroscopy.
机译:元素锗的纳米粒子具有令人感兴趣的光学和电子特性,并且毒性相对较低,使其成为生物和光电应用中有吸引力的材料。胶态Ge纳米颗粒的最常见途径包括涉及Zintl盐的复分解反应,Ge卤化物的氢化物还原以及有机锗烷前体的热分解。在这里,我们描述了另一种“加热”方法,用于合成晶体和空气稳定的尺寸和形状可调的Ge纳米颗粒。容易获得的试剂Gel4,油胺,油酸和六甲基二硅氮烷在一个锅中合并并加热到260°C,在此发生快速的成核事件并形成多晶的Ge纳米粒子。通过改变Gel4的浓度,可以将纳米粒子的尺寸从6纳米调整到22纳米,并具有狭窄的尺寸分布。加入三辛基膦可产生立方体形状的颗粒,而将溶剂转换为十八碳烯可产生一维纳米结构。通过XRD,TEM,HRTEM,EDS,XPS,DRIFT和UV-可见光谱对6个月以上完全稳定的Ge纳米颗粒进行了表征。

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