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Size-selective diffusion in nanoporous but flexible membranes for glucose sensors

机译:葡萄糖传感器纳米多孔膜中的选择性扩散

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A series of nanoporous membranes prepared from polyethylene-block- polystyrene were applied for size-selective diffusion of glucose and albumin molecules. Millimeter-sized test cells for characterization of such molecular diffusions were designed assumingan implantable glucose sensor. The prepared nanoporous membrane exhibits excellent flexibility and toughness compared to conventional nanoporous membranes of brittle alumina. Pore size of the membranes could be controlled from 5 to 30 nm by varying preparation conditions. All of these nanoporous membranes prepared in this study let glucose pass through, indicating a continuous pore connection through the entire thickness of the membrane in a few tens of micrometers. In contrast, membranes prepared under optimum conditions could perfectly block albumin permeation. This means that these vital molecules having different sizes can be selectively diffused through the nanoporous membranes. Such a successful combination of size selectivity of molecular diffusion in nanoscale and superior mechanical properties in macroscale is also beneficial for other devices requesting down-sized manufacture.
机译:将由聚乙烯嵌段聚苯乙烯制备的一系列纳米孔膜用于葡萄糖和白蛋白分子的尺寸选择性扩散。假定植入式葡萄糖传感器,设计了用于表征此类分子扩散的毫米大小的测试单元。与传统的脆性氧化铝纳米多孔膜相比,制备的纳米多孔膜表现出优异的柔韧性和韧性。通过改变制备条件,可以将膜的孔径控制在5至30nm。在这项研究中制备的所有这些纳米多孔膜都让葡萄糖通过,这表明在数十微米的膜整个厚度上存在连续的孔连接。相反,在最佳条件下制备的膜可以完美地阻止白蛋白渗透。这意味着这些具有不同大小的重要分子可以选择性地扩散通过纳米多孔膜。纳米级分子扩散的尺寸选择性与宏观级优异的机械性能的这种成功组合,对于要求缩小尺寸制造的其他设备也很有利。

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