Department of Physics, Clarkson University, Potsdam, NY 13699, USA.
Nanotechnology. 2011 Apr 22;22(16):165202. doi: 10.1088/0957-4484/22/16/165202. Epub 2011 Mar 11.
We study the effects of different nanopore geometries (double-conical, single-conical, cylindrical) on the electrostatic potential distribution and ionic conductivity in a double-layered semiconductor nanopore device as functions of the applied membrane bias. Ionic current-voltage characteristics as well as their rectification ratios are calculated using a simple ion transport model. Based on our calculations, we find that the double-layered semiconductor membrane with a single-conical nanopore with a narrow opening in the n-Si layer exhibits the largest range of available potential variations in the pore and, thus, may be better suited for control of polymer translocation through the nanopore.
我们研究了不同纳米孔几何形状(双锥形、单锥形、圆柱形)对双层半导体纳米孔器件中静电势分布和离子电导率的影响,这些参数是作为外加膜偏压的函数。我们使用简单的离子输运模型计算了离子电流-电压特性及其整流比。根据我们的计算,我们发现具有 n-Si 层中窄开口的单锥形纳米孔的双层半导体膜在孔中表现出最大的可用电势变化范围,因此,可能更适合控制聚合物通过纳米孔的易位。