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Motion-based threat detection using microrods: experiments and numerical simulations

机译:各自使用microrods威胁检测:实验和数值模拟

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摘要

Motion-based chemical sensing using microscale particles has attracted considerable recent attention. In this paper, we report on new experiments and Brownian dynamics simulations that cast light on the dynamics of both passive and active microrods (gold wires and gold-platinum micromotors) in a silver ion gradient. We demonstrate that such microrods can be used for threat detection in the form of a silver ion source, allowing for the determination of both the location of the source and concentration of silver. This threat detection strategy relies on the diffusiophoretic motion of both passive and active microrods in the ionic gradient and on the speed acceleration of the Au-Pt micromotors in the presence of silver ions. A Langevin model describing the microrod dynamics and accounting for all of these effects is presented, and key model parameters are extracted from the experimental data, thereby providing a reliable estimate for the full spatiotemporal distribution of the silver ions in the vicinity of the source.
机译:使用微尺度动态的化学传感最近吸引了相当大的粒子的关注。实验和布朗动力学模拟投光动力学的被动和主动microrods(金线和银离子又纳米)梯度。用于检测的形式的威胁银离子源,允许的决心源和的位置银的浓度。战略依靠的diffusiophoretic运动被动和主动的microrods离子梯度的速度加速度Au-Pt纳米银离子的存在。朗之万模型描述microrod动力学所有的这些影响是和会计,并给出了主要模型参数提取从实验数据,从而提供一个可靠的估计整个时空银离子的分布在附近的来源。

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