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Fabrication of Nanoporous Alumina Ultrafiltration Membrane with Tunable Pore Size Using Block Copolymer Templates

机译:使用嵌段共聚物模板制备孔径可调的纳米多孔氧化铝超滤膜

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摘要

Control over nanopore size and 3D structure is necessary to advance membrane performance in ubiquitous separation devices. Here, inorganic nanoporous membranes are fabricated by combining the assembly of cylinder-forming poly(styrene-block-methyl methacrylate) (PS-b-PMMA) block copolymer and sequential infiltration synthesis (SIS). A key advance relates to the use of PMMA majority block copolymer films and the optimization of thermal annealing temperature and substrate chemistry to achieve throughfilm vertical PS cylinders. The resulting morphology allows for direct fabrication of nanoporous AlOx by selective growth of Al2O3 in the PMMA matrix during the SIS process, followed by polymer removal using oxygen plasma. Control over the pore diameter is achieved by varying the number of Al2O3 growth cycles, leading to pore size reduction from 21 to 16 nm. 3D characterization, using scanning transmission electron microscopy tomography, reveals that the AlOx channels are continuous through the film and have a gradual increase in pore size with depth. Finally, the ultrafiltration performance of the fabricated AlOx membrane for protein separation as a function of protein size and charge is demonstrated.
机译:必须控制纳米孔的大小和3D结构,以提高无处不在的分离装置中的膜性能。在这里,无机纳米多孔膜是通过将圆柱状聚(苯乙烯-嵌段-甲基丙烯酸甲酯)(PS-b-PMMA)嵌段共聚物和顺序渗透合成(SIS)的组合组装而成的。一个关键的进步涉及到使用PMMA多数嵌段共聚物薄膜,以及优化热退火温度和基材化学性能以实现贯穿薄膜的垂直PS圆柱体。所产生的形态允许通过在SIS过程中在PMMA基质中选择性生长Al2O3,然后通过使用氧等离子体除去聚合物来直接制造纳米多孔AlOx。通过改变Al2O3的生长周期数可以实现对孔径的控制,从而将孔径从21 nm减小到16 nm。使用扫描透射电子显微镜层析成像的3D表征显示,AlOx通道在整个膜中是连续的,并且孔径随深度逐渐增大。最后,证明了所制备的AlOx膜用于蛋白质分离的超滤性能随蛋白质大小和电荷的变化而变化。

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