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Optimisation of Surface-Initiated Photoiniferter-Mediated Polymerisation under Confinement and the Formation of Block Copolymers in Mesoporous Films

机译:封闭条件下表面引发光引发剂介导的聚合反应的优化以及在中孔膜中形成嵌段共聚物

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摘要

Nature as the ultimate inspiration can direct, gate, and selectively transport species across channels to fulfil a specific targeted function. Harnessing such precision over local structure and functionality at the nanoscale is expected to lead to indispensable developments in synthetic channels for application in catalysis, filtration and sensing, and in drug delivery. By combining mesoporous materials with localised charge-switchable poly(2-(dimethylamino)ethyl methacrylate) (PDMAEMA) brushes, precisely controlling pore filling and exploring the possibility of incorporating two different responsive polymers, we hope to approach the precision control of natural systems in the absence of an external force. Here, we report a simple one-step approach to prepare a mesoporous silica thin film with ~8 nm pores functionalised with a photoiniferter by combining sol–gel chemistry and evaporation-induced self-assembly (EISA). We show that surface-initiated photoiniferter-mediated polymerisation (SI-PIMP) allows the incorporation of a high polymer content up to geometrical pore blocking by the simple application of UV light in the presence of a monomer and solvent, proceeding in a controlled manner in pore sizes below 10 nm, with the potential to tune the material properties through the formation of surface-grafted block copolymers.
机译:大自然是最终的灵感来源,可以引导,控制和选择性地跨通道运输物种,以实现特定的目标功能。在纳米尺度上利用这种在局部结构和功能上的精确度,有望导致在催化,过滤和传感以及药物递送中应用的合成通道中必不可少的发展。通过将介孔材料与局部电荷可切换的聚甲基丙烯酸2-(二甲基氨基)乙酯(PDMAEMA)刷结合使用,精确控制孔填充并探索掺入两种不同的响应性聚合物的可能性,我们希望能够对自然系统进行精确控制没有外力。在这里,我们报告了一种简单的一步法,通过结合溶胶-凝胶化学和蒸发诱导的自组装(EISA),制备了具有约8 nm孔的中孔二氧化硅薄膜,该薄膜用光引发剂进行了功能化。我们表明,表面引发的光引发剂介导的聚合反应(SI-PIMP)允许通过在单体和溶剂的存在下简单地施加紫外线,以可控的方式进行,从而引入高含量的聚合物直至几何孔阻塞。孔径小于10 nm,具有通过形成表面接枝嵌段共聚物来调节材料性能的潜力。

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