Classification and Condensation of Nano-Sized Airborne Particles by Electrically Tunning Collection Size

Yong-Ho Kim, S. Kwon, Dongho Park, Jungho Hwang, Yong-Jun Kim
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引用次数: 1

Abstract

This paper demonstrates a hybrid particle classification and condensation device based on both aerodynamics and electrostatics using a micro virtual impactor (¿VI). The ¿VI is capable of classifying the nanoparticles according to their size and condense their number concentration that we are interested. The ¿VI was fabricated using polymer micromachining. Its classification efficiency was examined using solid particles, polystyrene latex (PSL) ranging from 80 to 250 nm in diameter. Thereafter, specific-sized nanoparticles, NaCl of 50 nm in diameter, were condensed by applying an electric potential of 1.1 kV. As a result, the electric signal detected was amplified by 4 times higher than that when no electric potential was applied. The output signal was amplified by 4 times (before condensation: 4 fA, after condensation: 16 fA).
电调节收集尺寸对纳米级空气粒子的分类和冷凝
本文演示了一种基于空气动力学和静电学的混合粒子分类和凝聚装置,该装置采用微型虚拟冲击器(¿VI)。VI能够根据纳米颗粒的大小对其进行分类,并浓缩我们感兴趣的纳米颗粒的数量和浓度。采用聚合物微加工技术制备了该材料。采用直径为80 ~ 250 nm的固体颗粒聚苯乙烯乳胶(PSL)对其分级效率进行了测试。然后,施加1.1 kV的电势使直径为50 nm的特定尺寸的NaCl纳米颗粒凝聚。结果,检测到的电信号比不施加电位时放大了4倍。输出信号放大4倍(冷凝前为4 fA,冷凝后为16 fA)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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