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Electrophoretic Capture and Detection of Nanoparticles at the Opening of a Membrane Pore Using Scanning Electrochemical Microscopy

机译:使用扫描电化学显微镜对膜孔开口处的纳米粒子进行电泳捕获和检测

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Stochastic electrophoretic capture of individual nanometer-scale particles at the small opening of a conically shaped nanopore in a synthetic membrane is described.Particle capture is sensed using a scanning electrochemical microscope (SECM) to measure the decrease hi the transport rate of a redox-active molecule through the pore.The SECM tip is positioned at the larger backside opening of pore and used to amperometrically monitor the transport rate prior,during,and after particle capture.Following capture,the particle is released by electrophoretically driving it out of the pore opening and back into the solution.The capture and release method is demonstrated by detection of charged polystyrene spheres (43-150-nm diameter) using a polycarbonate membrane with conically shaped pores,the small opening of the pore having a diameter of 60 nm.The inverse of the time to capture polystyrene spheres increases with particle concentration over the range 10~8-10~(10) particles/mL.Selective detection based on nanoparticle charge and size is also demonstrated.A quantitative theoretical description of the rate of particle capture is presented,and the physical mechanism of particle capture,based on the balance of electrostatic and entropic forces,is considered.
机译:描述了在合成膜的圆锥形纳米孔小开口处对单个纳米级颗粒的随机电泳捕获。使用扫描电化学显微镜(SECM)感测颗粒捕获,以测量氧化还原活性物质的转运速率SECM尖端位于孔的较大背面开口处,用于在颗粒捕获之前,过程中和之后通过电流分析法监测其传输速率。捕获之后,通过电泳将其驱出孔口以释放颗粒捕获和释放方法通过使用带圆锥形孔的聚碳酸酯膜检测带电的聚苯乙烯球(直径43-150 nm)来证明,该聚苯乙烯球的直径为60 nm。聚苯乙烯球捕获时间的倒数随颗粒浓度在10〜8-10〜(10)个颗粒/ mL范围内而增加。给出了基于纳米粒子电荷和大小的离子。定量地描述了粒子捕获的速率,并基于静电力和熵力的平衡考虑了粒子捕获的物理机理。

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