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Aqueous germanate ion solution promoted synthesis of worm-like crystallized Ge nanostructures under ambient conditions

机译:锗酸离子水溶液在环境条件下促进蠕虫状结晶锗纳米结构的合成

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This work demonstrates that it is possible to synthesize crystallized Ge nanostructures directly in an aqueous medium under ambient conditions by using widely available GeO2 (in the form of germanate ions) as a precursor. The reaction of germanate ions with NaBH4 in an aqueous medium resulted in highly hydrogenated Ge that could be transformed into crystallized Ge after an air-drying treatment. The NaBH4/GeO2 molar ratio, reaction time and drying temperature were optimized for the synthesis of crystallized Ge products. Furthermore, the reaction time has an influence on the size and shape of the final crystallized Ge products. A reaction time of 12 h could result in crystallized Ge powder samples that contain ultra-small (5-20 nm) particles and larger (50-100 nm) particles. By controlling the reaction time to 24 h, a Ge powder product consisting of worm-like crystallized Ge nanostructures with diameters of 10-80 nm and lengths up to 1000 nm was obtained. The possible reaction and growth mechanisms involved in this method were investigated. This new synthetic route may be a good candidate for synthesizing a wide variety of crystallized Ge nanomaterials and devices due to its low cost, low safety risk, facileness, high yield (above 70% and in gram scale) and convenience for adding other chemicals (i.e. dopants or morphology modifying agents) into the reaction system.
机译:这项工作表明,通过使用广泛可用的GeO2(以锗酸盐离子的形式)作为前体,可以在环境条件下直接在水性介质中合成结晶的Ge纳米结构。锗酸根离子与NaBH4在水性介质中的反应导致高度氢化的Ge,经过风干处理后可以转变为结晶的Ge。优化了NaBH4 / GeO2的摩尔比,反应时间和干燥温度,以合成结晶的Ge产物。此外,反应时间对最终结晶的Ge产物的尺寸和形状有影响。 12 h的反应时间可能会导致结晶的Ge粉样品包含超小(5-20​​ nm)颗粒和大(50-100 nm)颗粒。通过将反应时间控制到24小时,获得了由蠕虫状结晶的Ge纳米结构组成的Ge粉末产物,其直径为10-80 nm,长度最大为1000 nm。研究了该方法可能涉及的反应和生长机理。这种新的合成路线因其低成本,低安全风险,易用性,高收率(以克计为70%以上)和添加其他化学物质的便利性而成为合成多种结晶的Ge纳米材料和装置的理想选择。即掺杂剂或形态修饰剂)进入反应体系。

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