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Cu-Sn binary metal particle generation by spray pyrolysis

机译:喷雾热解的Cu-Sn二元金属颗粒产生

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Cu-Sn binary particles were generated via spray pyrolysis from metal salt precursors with ethylene glycol as the co-solvent and reducing agent. The morphology, crystallinity, and elemental distribution of particles were tunable by changing the reaction temperature, residence time, and quench gas flow rate. Hollow porous particles were fabricated with a higher Sn concentration on the particle surface when the furnace set point was 500 degrees C, while solid particles with a lower surface Sn concentration were generated when the furnace set point was 1000 degrees C. Particles with spherical morphologies were obtained at long residence time conditions (4.5 s). Cu-Sn binary particles with irregular structures (e.g., pores on the particle surface, fragmented spherical particles, and lamellar fragments) were formed at short residence time conditions (0.92 s). A possible spray pyrolysis mechanism was proposed that incorporates chemical reaction steps and structural progression. By this mechanism, the metal salts are believed to sequentially undergo hydrolysis to metal hydroxides, decomposition to metal oxides, reduction to metals, and finally diffusion of Sn into the Cu matrix to generate the Cu-Sn solid solution.
机译:通过从金属盐前体的喷雾热解产生Cu-Sn二元颗粒作为共溶剂和还原剂。通过改变反应温度,停留时间和淬火气体流速来调谐颗粒的形态学,结晶度和元素分布。当炉子设定点为500℃时,在颗粒表面上以较高的Sn浓度制备中空多孔颗粒,而当炉设定点为1000摄氏度时,产生具有较低表面Sn浓度的固体颗粒。具有球形形态的颗粒在长停留时间条件下获得(4.5秒)。在短暂停留时间条件下形成具有不规则结构的Cu-Sn二元颗粒(例如,颗粒表面,碎片的球形颗粒和层状片段)(0.92秒)。提出了一种掺入化学反应步骤和结构进展的可能的喷雾热解机理。通过该机制,认为金属盐依次经历水解与金属氢氧化物,对金属氧化物的分解,还原到金属,最后将Sn扩散到Cu基质中以产生Cu-Sn固体溶液。

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