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Kinetics and mechanisms of nanoparticle formation and growth in vapor phase condensation process

机译:气相缩合过程中纳米粒子形成和生长的动力学和机理

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摘要

Design of nanoparticle synthesis by inert-gas condensation process was studied according to the mechanisms and kinetics of nucle-ation and growth in the vapor phase. The effect of process parameters, e.g., source temperature, evaporation rate, and the inert-gas pressure, on the particle size and particle shape was examined at the example for silver and copper-tin alloy. The synthesized nanopowders had near spherical shape with particle size range from 10 to 60 nm dependent on the processing condition. Scanning and transmission electron microscopy (SEM and TEM) analyses showed that the crystallites are subunits of larger agglomerate particles, and relatively large particles display crystal habit. Based on the experimental results and theoretical principles, nucleation, growth, coagulation and coalescence of the particles were analyzed. Accordingly, the kinetics and mechanisms of nanoparticle synthesis in low-pressure gas phase was determined. A simple operating map for nanoparticle synthesis was presented. The results may serve as a guide for design of experimental studies on the effect of process parameters on nanoparticle characteristics.
机译:根据气相中成核和生长的机理和动力学,研究了惰性气体冷凝法合成纳米颗粒的设计。对于银和铜-锡合金,在实施例中检查了工艺参数,例如源温度,蒸发速率和惰性气体压力对粒度和颗粒形状的影响。所合成的纳米粉末具有接近球形的形状,其粒径范围为10至60nm,这取决于加工条件。扫描和透射电子显微镜(SEM和TEM)分析表明,微晶是较大团聚颗粒的亚基,相对大的颗粒具有晶体习性。根据实验结果和理论原理,分析了颗粒的成核,生长,凝聚和聚结。因此,确定了低压气相中纳米颗粒合成的动力学和机理。给出了纳米颗粒合成的简单操作图。该结果可作为设计工艺参数对纳米颗粒特征影响的实验研究的指导。

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