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Synthesis of Nanoparticles in a Pulsed-Periodic Gas Discharge and Their Potential Applications

机译:脉冲周期气体排出中的纳米颗粒及其潜在应用的合成

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摘要

Conditions for the synthesis of three types nanoparticles (SnO2, Al2O3, and Ag) with typical sizes in the range of 4 to 10 nm and a performance of 0.4 g/h are employed in a pulsed-periodic gas discharge in an atmosphere of air. Spherical Ge nanoparticles with a characteristic size of 13 nm are synthesized by these means for the first time with a performance of around 10 mg/h. The specific energy consumption in the synthesis of nanoparticles is for these materials in the range of 2000 to 5000 kW h/kg. The prospects for using tinoxide nanoparticles in sensor components and jets of silver nanoparticles for aerosol printing are discussed. The merits and demerits of the pulsed gas-discharge method among other gas-phase approaches to the synthesis of nanoparticles are analyzed for the current level of development.
机译:在4至10nm的范围内具有典型尺寸的三种纳米颗粒(SnO2,Al 2 O 3和Ag)的条件在空气气氛中采用脉冲周期性气体排放的典型尺寸和0.4g / h的性能。 具有特征尺寸为13nm的球形Ge纳米颗粒通过这些方法合成第一次,性能约为10mg / h。 纳米颗粒合成的特定能量消耗用于这些材料在2000至5000kWh / kg的范围内。 讨论了在传感器组分中使用氧化铅纳米颗粒的前景和用于气溶胶印刷的银纳米粒子的喷射。 分析了当前发育水平的脉冲气相方法中脉冲气相方法的脉冲气相方法的优点和缺点。

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