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Simultaneous Electro-Optical Tracking for Nanoparticle Recognition and Counting

机译:同时光电跟踪的纳米粒子识别和计数。

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摘要

We present the first detailed experimental observation and analysis of nanoparticle electrophoresis through a nanochannel obtained with synchronous high-bandwidth electrical and camera recordings. Optically determined particle diffusion coefficients agree with values extracted from fitting electrical transport measurements to distributions from 1D Fokker-Planck diffusion-drift theory. This combined tracking strategy enables optical recognition and electrical characterization of nanoparticles in solution, which can have a broad range of applications in biology and materials science.
机译:我们通过同步高带宽电记录和相机记录获得的纳米通道,对纳米颗粒电泳进行了首次详细的实验观察和分析。光学确定的粒子扩散系数与从一维Fokker-Planck扩散-漂移理论拟合电传输测量值到分布的结果一致。这种组合的跟踪策略可以对溶液中的纳米颗粒进行光学识别和电表征,从而可以在生物学和材料科学中广泛应用。

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