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Template-Synthesized Nanotues for Chemical Separations and Analysis

机译:模板合成的纳米级化合物,用于化学分离和分析

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摘要

We have developed a new class of synthetic membranes that consist of a porous polymeric support that contains an ensemble of gold nanotubes that span the thickness of the support membrane. The support is a commercially-available microporous polycarbonate filter with cylindrical nanoscopic pores. The gold nanotubes are prepared by electroless deposition of Au onto the proe walls, that is, the pores acts as templates for the nanotubes. We have shown that by controlling the Au deposition time, Au nanotubes that have effective inside diameters of molecular dimensions (< 1 nm) can be prepared. These nanotube membranes (< 1 nm) can be prepared. These nanotube membranes can be used to cleanly separate small molecules on the basis of molecular size. Furthermore, use of these membranes as a novel electrochemical sensor is also discussed. This new sensing shceme involves applying a constant potential across the Au nanotube membrane and measuring the drop in the transmembrane current upon the addition of the analyte. This paper reviews our recent progress on size-based based transport selectivity and sensor applications in this new class of membranes.
机译:我们已经开发出一类新的合成膜,该膜由多孔聚合物载体组成,该载体包含横跨载体膜厚度的金纳米管集合。载体是具有圆柱形纳米孔的可商购的微孔聚碳酸酯过滤器。通过将金化学沉积在前壁上来制备金纳米管,也就是说,孔充当纳米管的模板。我们已经表明,通过控制Au沉积时间,可以制备具有有效分子尺寸(<1 nm)内径的Au纳米管。可以制备这些纳米管膜(<1 nm)。这些纳米管膜可用于根据分子大小干净地分离小分子。此外,还讨论了将这些膜用作新型电化学传感器。这种新的传感方式包括在金纳米管膜上施加恒定电势,并在添加分析物时测量跨膜电流的下降。本文回顾了我们在这类新型膜中基于尺寸的传输选择性和传感器应用的最新进展。

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