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Hydrothermal synthesis, characterization and properties of SnS nanoflowers

机译:SnS纳米花的水热合成,表征与性能

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Novel tin (II) sulfide (SnS) nanoflowers were successfully synthesized via a simple thioglycollic acid (TGA)-assisted hydrothermal process at 250 deg C. X-ray diffraction, scanning electron microscopy and energy-dispersive spectrometry were employed to characterize the structure, morphology and chemical composition of the product, the results of which reveal that the product is composed of well crystallized orthorhombic SnS nanoflowers. The band gaps were obtained by analyzing UV-vis absorption spectrum; herein, the direct and indirect optical band gaps are 1.53 and 1.43 eV, respectively. Furthermore, we discussed critical factors (e.g., TGA, SnCl_2/Na_2S mol ratio of the reactants, hydrothermal temperature, and sulfur source) for hydrothermal formation of the SnS nanoflowers.
机译:通过简单的硫代乙醇酸(TGA)辅助水热法在250℃下成功合成了新型的硫化锡(SnS)纳米花。采用X射线衍射,扫描电子显微镜和能谱分析技术对结构进行了表征,产物的形态和化学组成,结果表明该产物由结晶良好的正交SnS纳米花组成。通过分析UV-vis吸收光谱获得带隙。这里,直接和间接光学带隙分别为1.53和1.43eV。此外,我们讨论了水热形成SnS纳米花的关键因素(例如TGA,反应物的SnCl_2 / Na_2S摩尔比,水热温度和硫源)。

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