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Nanofluidic Diode Based on Branched Alumina Nanochannels with Tunable Ionic Rectification

机译:基于可调节离子整流的支化氧化铝纳米通道的纳米流体二极管

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In this work, the synthetic alumina nanochannels with bi-, tri-, and tetra-branched geometry structures exhibited ionic current rectifications with nonlinear I— V curves. Such diode performance of the branched alumina nanochannel is mainly dependent on the cooperative asymmetry of the branched structure and the surface-charge distribution on inner walls. By regulating the geometry, electrolyte pH, and solution concentration, the tunable ionic rectification properties are effectively obtained including both the rectification ratios and the rectifying direction that were deduced from the converted ion selectivity. This nanofluidic diode may open up a new opportunity for the application of the complex nanofluidic devices in contrast to previously reported channels to provide molecular analysis, controlled mass transport, drug release, and various logic gate operations.
机译:在这项工作中,具有双,三和四分支几何结构的合成氧化铝纳米通道显示出具有非线性IV曲线的离子电流整流。支化氧化铝纳米通道的这种二极管性能主要取决于支化结构的协同不对称性和内壁上的表面电荷分布。通过调节几何形状,电解质pH值和溶液浓度,可以有效地获得可调节的离子整流性能,包括从转换后的离子选择性推导的整流比和整流方向。与先前报道的提供分子分析,受控质量传输,药物释放和各种逻辑门操作的通道相比,这种纳米流体二极管可能为复杂的纳米流体设备的应用开辟新的机会。

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