首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Synthesis and characterization of nanoplate-based SnS microflowers via a simple solvothermal process with biomolecule assistance
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Synthesis and characterization of nanoplate-based SnS microflowers via a simple solvothermal process with biomolecule assistance

机译:通过简单的溶剂热过程和生物分子辅助合成和表征基于纳米板的SnS微型花

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摘要

A biomolecule-assisted mild solvothermal process has been successfully developed to synthesize the SnS microflowers with nanoplates, in which L-cysteine was used as the sulfur source and complexing agent. The phase structure, morphology, composition and optical properties of the as-prepared product were characterized by XRD, FE-SEM, TEM (HRTEM), SAED, XPS, TGA and UV-vis spectrum. Results demonstrated that the as-synthesized product is comprised of microflowers with nanoplates, and the nanoplates are 50 nm in average thickness. And a possible mechanism for the growth of the SnS microflowers with nanoplates was put forward and briefly discussed. The proposed solvothermal method using L-cysteine as the sulfur source and complexing agent is very promising for the low cost and large-scale synthesis of other tin chalcogenide compounds.
机译:已经成功地开发了一种生物分子辅助的温和溶剂热法,以纳米板合成SnS微花,其中L-半胱氨酸用作硫源和络合剂。通过XRD,FE-SEM,TEM(HRTEM),SAED,XPS,TGA和UV-vis光谱对所制备产品的相结构,形貌,组成和光学性质进行了表征。结果表明,合成后的产物由带有纳米板的微花组成,纳米板的平均厚度为50 nm。并提出并简要讨论了纳米板生长SnS微花的可能机理。提议的使用L-半胱氨酸作为硫源和络合剂的溶剂热方法对于低成本和大规模合成其他硫族锡化合物非常有希望。

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