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Facile fabrication of nanofluidic diode membranes using anodic aluminium oxide

机译:老掉牙的制造奈米流体电二极管膜采用阳极氧化铝

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Active control of ion transport plays important roles in chemical and biological analytical processes. Nanofluidic systems hold the promise for such control through electrostatic interaction between ions and channel surfaces. Most existing experiments rely on planar geometry where the nanochannels are generally very long and shallow with large aspect ratios. Based on this configuration the concepts of nanofluidic gating and rectification have been successfully demonstrated. However, device minimization and throughput scaling remain significant challenges. We report here an innovative and facile realization of hetero-structured Al2O3/SiO2 (Si) nanopore array membranes by using pattern transfer of self-organized nanopore structures of anodic aluminum oxide (AAO). Thanks to the opposite surface charge states of Al2O3 (positive) and SiO2 (negative), the membrane exhibits clear rectification of ion current in electrolyte solutioSs with very low aspect ratios compared to previous approaches. Our hetero-structured nanopore arrays provide a valuable platform for high throughput applications such as molecular separation, chemical processors and energy conversion.
机译:主动控制离子运输的重要角色在化学和生物分析流程。通过静电等控制离子相互作用和通道的表面。大多数现有的实验依靠平面几何纳米通道的地方通常很长吗和浅大纵横比。这个配置奈米流体的概念成功地控制和整改演示。吞吐量变化仍是重大挑战。我们在这里报告一个创新和肤浅实现hetero-structured氧化铝/二氧化硅(Si)纳米孔阵列膜通过使用模式自组织纳米孔结构阳极氧化铝(氧化铝)。相反的表面电荷的氧化铝(积极的)和二氧化硅(负),膜展现清晰的离子电流的整流电解质与非常低的纵横比答案相比以前的方法。hetero-structured纳米孔阵列提供有价值的高吞吐量的平台应用,如分子分离,化学处理器和能量转换。

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