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Combustion of multiphase reactants for the synthesis of nanocomposite materials

机译:多相反应物燃烧合成纳米复合材料

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Controlling nanocomposite composition and morphology is a vital step toward designing new and advanced materials. The current work presents the results of an experimental investigation of the use of mixed-phase reactants for the synthesis of nanocomposite materials. Gas-phase tetramethyltin was used as a precursor for tin dioxide (SnO_2). Metal additives were introduced to the SnO_2 synthesis system using solid-phase metal acetates as the precursors. The physical and chemical properties of the metal acetate reactants, the combustion environment and the nanocomposite materials were characterized in order to clarify the reaction processes important during synthesis of nanocomposite materials from these categories of mixed-phase reactants. X-ray diffractometry was used to determine composition and the crystalline structure of reactant and product materials. Scanning and transmission electron microscopy were used to examine particle morphology of reactant and product materials, and X-ray energy dispersive spectroscopy was used for elemental speciation. The results indicate the metal acetates are an excellent source of metal and metal oxide additives in a flame reactor. The metal acetates rapidly decompose and experience considerable restructuring, leading to metal additives with a range of microstructures in the SnO_2 nanocomposites: from metal encapsulation in SnO_2 to mixed aggregates.
机译:控制纳米复合材料的组成和形态是设计新型和先进材料的关键一步。当前的工作提出了使用混合相反应物合成纳米复合材料的实验研究结果。气相四甲基锡用作二氧化锡(SnO_2)的前体。使用固相金属乙酸盐作为前体,将金属添加剂引入SnO_2合成系统。表征了金属乙酸盐反应物的物理和化学性质,燃烧环境和纳米复合材料,以阐明由这些类型的混合相反应物合成纳米复合材料过程中重要的反应过程。 X射线衍射法用于确定反应物和产物材料的组成和晶体结构。扫描和透射电子显微镜用于检查反应物和产物材料的颗粒形态,X射线能谱仪用于元素形态分析。结果表明,金属乙酸盐是火焰反应器中金属和金属氧化物添加剂的极佳来源。金属乙酸盐迅速分解并经历相当大的重组,从而导致在SnO_2纳米复合材料中具有各种微观结构的金属添加剂:从SnO_2中的金属封装到混合的聚集体。

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