Al2O3/W hetero-structured nanopore membranes: From native to tunable nanofluidic diodes

Songmei Wu, F. Wildhaber, A. Bertsch, J. Brugger, P. Renaud
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引用次数: 1

Abstract

We present here Al2O3/W hetero-structured nanopore membranes which function as native and electrical field tunable nanofluidic diodes. A typical membrane is 100×100 μm2 in size with pore density of ~20/μm2. The nanopores are 26 nm in diameter and 400 nm in length. Owing to the opposite surface charge states of Al2O3 (positive) and W (negative with native oxide), the membrane exhibits clear rectification of ion current in electrolyte solutions. After thermal heating at 350°C for 2 hrs, approximately 10 nm WOx grows on the surface of W, forming a conformal and dense dielectric layer. The W layer allows the application of an electrical field to further modulate the ionic transport through the nanopores with low gate potentials and ultra low gate leakage current. We have demonstrated the control of rectifying factor from 2 to 11. Our experimental findings have a valuable potential for controllable high throughput molecular separation and chemical processors.
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Al2O3/W异质结构纳米孔膜:从原生到可调纳米流体二极管
我们在这里提出了Al2O3/W异质结构纳米孔膜,其功能是天然的和电场可调的纳米流体二极管。典型的膜尺寸为100×100 μm2,孔密度为~20/μm2。纳米孔直径为26 nm,长度为400 nm。由于Al2O3(正)和W(带天然氧化物的负)的表面电荷状态相反,膜在电解质溶液中表现出明显的离子电流整流。在350℃下加热2小时后,W表面生长出约10 nm的WOx,形成共形致密的介电层。W层允许应用电场进一步调节离子通过具有低栅极电位和超低栅极泄漏电流的纳米孔的传输。我们演示了整流因子从2到11的控制。我们的实验结果在可控高通量分子分离和化学处理方面具有宝贵的潜力。
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