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Block Copolymer-Derived Monolithic Polymer Films and Membranes Comprising Self-Organized Cylindrical Nanopores for Chemical Sensing and Separations

机译:嵌段共聚物衍生的整体聚合物膜和膜,包含用于化学传感和分离的自组织圆柱状纳米孔

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Microphase separation of block copolymers (BCPs) has been extensively studied because it leads to the self-assembled formation of periodic structures controlled on the scale of tens of nanometers. In particular, BCP-derived cylindrical microdomains have attracted considerable interest for various applications owing to their well-defined shapes of uniform and tunable diameters. This focus review highlights recent efforts to apply BCP-derived monolithic films/membranes comprising cylindrical nanopores for chemical sensing and separations. The nanopores provide confined molecular pathways that exhibit enhanced selectivity based on steric, electrostatic, and chemical interactions, and thus, enable us to design unique electrochemical sensors and highly efficient separation membranes.
机译:嵌段共聚物(BCP)的微相分离已经得到了广泛的研究,因为它导致周期性组装的自组装形成,该周期性结构控制在几十纳米的规模上。尤其是,由于BCP衍生的圆柱形微区具有定义明确的均匀直径和可调直径的形状,因此已引起了广泛的关注。这篇重点综述重点介绍了最近的应用BCP衍生的整体式薄膜/膜(包括圆柱形纳米孔)进行化学感测和分离的努力。纳米孔提供了受限的分子途径,这些分子途径基于空间,静电和化学相互作用而显示出增强的选择性,因此使我们能够设计独特的电化学传感器和高效的分离膜。

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