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Controllable Hydrothermal Synthesis of Cd2Ge2O6 Nanostructures

机译:Cd2Ge2O6纳米结构的可控水热合成

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Various Cd2Ge2O6 nanostructures, including nanorods, nanoparticles, nanowires and erythrocyte/ flower/disc-like superstructures have been successfully prepared by hydrothermal methods, which are simply tuned by changing the reaction temperature, surfactants, and the molar ratio of Cd and Ge precursors in aqueous solution. These morphologies can be simply controlled by only selecting the reactants and controlling experimental conditions with excellent reproducibility. These studies about the Cd2Ge2O6 nanostructures reveal that temperature is a crucial parameter to tune the morphologies from nanoparticles to nanorods. By adding various surfactants, different nanostructures such as flower/disc-like nanosticks could be obtained. Replacing Cd(CH3COO)22H2O with CdO as the precusor results in the formation of ultralong nanowires with CTAB as surfactant. Molar ratio of GeO2 to CdO was demonstrated as an important factor to influence the surface smoothness of nanowires. It is believed that the simple hydrothermal route may be the useful route to synthesize variable germanate nanostructures for various applications.
机译:通过水热法成功地制备了各种Cd2Ge2O6纳米结构,包括纳米棒,纳米颗粒,纳米线和红细胞/花/盘状超结构,只需改变反应温度,表面活性剂以及水中Cd和Ge前驱体的摩尔比即可简单地对其进行调节。解。只需选择反应物并以优异的可重复性控制实验条件,即可简单地控制这些形态。对Cd2Ge2O6纳米结构的这些研究表明,温度是调节从纳米粒子到纳米棒的形态的关键参数。通过添加各种表面活性剂,可以获得不同的纳米结构,例如花/盘状纳米棒。用CdO代替Cd(CH3COO)22H2O作为先驱,导致以CTAB为表面活性剂形成超长纳米线。事实证明,GeO2与CdO的摩尔比是影响纳米线表面光滑度的重要因素。据信,简单的水热路线可能是合成可变锗酸盐纳米结构用于各种应用的有用路线。

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