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薄膜中双嵌段共聚物相互作用二元共混物的自组装:通过反应性纳米通道化学制备多孔材料的潜在途径。

Self-assembly of an interacting binary blend of diblock copolymers in thin films: a potential route to porous materials with reactive nanochannel chemistry.

作者信息

Rao Jingyi, Ma Huan, Baettig Julia, Woo Sanghoon, Stuparu Mihaiela C, Bang Joona, Khan Anzar

机构信息

Department of Materials, ETH, Zürich, CH-8093, Switzerland.

出版信息

Soft Matter. 2014 Aug 21;10(31):5755-62. doi: 10.1039/c4sm01029a. Epub 2014 Jun 30.

Abstract

Self-assembly of a binary mixture of poly(styrene)336-block-poly(4-vinyl pyridine)25 (PS336-b-P4VP25) and poly(ethylene glycol)113-block-poly(4-hydroxy styrene)25 (PEG113-b-P4HS25) is shown to give rise to a cylindrical morphology in thin films through pyridine/phenol-based hetero-complementary hydrogen bonding interactions between the P4VP and P4HS copolymer segments. Removal of the cylindrical phase (PEG-b-P4HS) allowed access to porous materials having a pore surface decorated with P4VP polymer blocks. These segments could be transformed into cationic polyelectrolytes through quaternization of the pyridine nitrogen atom. The resulting positively charged nanopore surface could recognize negatively charged gold nanoparticles through electrostatic interactions. This work, therefore, outlines the utility of the supramolecular AB/CD type of block copolymer towards preparation of ordered porous thin films carrying a chemically defined channel surface with a large number of reactive sites.

摘要

聚(苯乙烯)336 - 嵌段 - 聚(4 - 乙烯基吡啶)25(PS336 - b - P4VP25)和聚(乙二醇)113 - 嵌段 - 聚(4 - 羟基苯乙烯)25(PEG113 - b - P4HS25)的二元混合物通过P4VP和P4HS共聚物链段之间基于吡啶/苯酚的杂互补氢键相互作用在薄膜中自组装形成圆柱形形态。去除圆柱形相(PEG - b - P4HS)可得到孔表面装饰有P4VP聚合物链段的多孔材料。这些链段可通过吡啶氮原子的季铵化转化为阳离子聚电解质。所得带正电的纳米孔表面可通过静电相互作用识别带负电的金纳米颗粒。因此,这项工作概述了超分子AB/CD型嵌段共聚物在制备具有大量反应位点的化学定义通道表面的有序多孔薄膜方面的实用性。

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