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Electrothermal based active control of ion transport in a microfluidic device with an ion-permselective membrane

机译:基于电热离子的主动控制微流控设备的运输ion-permselective膜

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The ability to induce regions of high and low ionic concentrations adjacent to a permselective membrane or a nanochannel subject to an externally applied electric field (a phenomenon termed concentration-polarization) has been used for a broad spectrum of applications ranging from on-chip desalination, bacteria filtration to biomolecule preconcentration. But these applications have been limited by the ability to control the length of the diffusion layer that is commonly indirectly prescribed by the fixed geometric and surface properties of a nanofluidic system. Here, we demonstrate that the depletion layer can be dynamically varied by inducing controlled electrothermal flow driven by the interaction of temperature gradients with the applied electric field. To this end, a series of microscale heaters, which can be individually activated on demand are embedded at the bottom of the microchannel and the relationship between their activation and ionic concentration is characterized. Such spatio-temporal control of the diffusion layer can be used to enhance on-chip electro-dialysis by producing shorter depletion layers, to dynamically reduce the microchannel resistance relativee to that of the nanochannel for nanochannel based (bio)sensing, to generate current rectification reminiscent of a diode like behavior and control the location of the preconcentrated plug of analytes or the interfac of brine and desalted streams.
机译:诱导能力高和低的地区离子浓度相邻选择性渗透纳米通道的膜或一个外部应用电场(一个现象称为浓差极化)已被使用为广泛的应用范围芯片上的海水淡化、细菌过滤生物分子预凝结。应用程序的能力是有限的控制扩散层的长度一般规定间接修复几何和表面一个奈米流体的属性系统。层可以被诱导动态变化电热流驱动控制交互的温度梯度应用电场。可以单独的微型加热器激活底部嵌入的需求微通道和之间的关系他们的激活和离子浓度为特征。扩散层可以用来增强芯片上电解法生产短耗尽层,动态减少微通道的阻力relativee的纳米通道的基于纳米通道(生物)传感,生成电流整流想起一个二极管行为和控制的位置分析物或preconcentrated插头interfac盐水和脱盐的流。

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