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Synthesis of monodispersed nanocrystalline materials in supercritical ethanol: a generalized approach

机译:超临界乙醇中单分散纳米晶体材料的合成:一种通用方法

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摘要

We report a generalized approach for synthesis of a variety of nearly monodisperse inorganic nanostmctured materials with different sizes and shapes using supercritical ethanol (SCE). In the present synthetic strategy the inorganic precursor and stabilizer (long chain amines) were co-solubilised in ethanol. Decomposition of the precursor occurred under supercritical conditions and facilitated rapid homogeneous nucleation, growth, and crystallization of the desired nanoparticles in near monodisperse state. The size and shape of the synthesized nanoparticles were tuned by varying the synthetic parameters. The particles exhibited size- and shape-dependent properties, and could be readily dispersed in hexane and toluene. Controlled evaporation of solvent from the dispersions yielded fairly ordered 2D structures.
机译:我们报告了一种使用超临界乙醇(SCE)合成具有不同尺寸和形状的各种几乎单分散的无机纳米结构材料的通用方法。在本合成策略中,将无机前体和稳定剂(长链胺)共溶在乙醇中。前体的分解在超临界条件下发生,并促进了所需的纳米颗粒在接近单分散状态下的快速均匀成核,生长和结晶。通过改变合成参数来调节合成纳米颗粒的尺寸和形状。颗粒表现出与尺寸和形状有关的性质,并且可以容易地分散在己烷和甲苯中。从分散体中溶剂的受控蒸发产生了相当有序的2D结构。

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