Mijangos Carmen, Martin Jaime
Instituto de Ciencia y Tecnología de Polímeros, ICTP-CSIC, Juan de la Cierva 3, 28006 Madrid, Spain.
Donostia International Physics Center, DIPC, Paseo de Manuel Lardizabal 4, 20018 Donostia-San Sebastian, Spain.
Polymers (Basel). 2023 Jan 19;15(3):525. doi: 10.3390/polym15030525.
In the last few years, the polymerization of monomers within the nanocavities of porous materials has been thoroughly studied and developed, allowing for the synthesis of polymers with tailored morphologies, chemical architectures and functionalities. This is thus a subject of paramount scientific and technological relevance, which, however, has not previously been analyzed from a general perspective. The present overview reports the state of the art on polymerization reactions in spatial confinement within porous materials, focusing on the use of anodized aluminum oxide (AAO) templates. It includes the description of the AAO templates used as nanoreactors. The polymerization reactions are categorized based on the polymerization mechanism. Amongst others, this includes electrochemical polymerization, free radical polymerization, step polymerization and atom transfer radical polymerization (ATRP). For each polymerization mechanism, a further subdivision is made based on the nature of the monomer used. Other aspects of "in situ" polymerization reactions in restricted AAO geometries include: conversion monitoring, kinetic studies, modeling and polymer characterization. In addition to the description of the polymerization process itself, the use of polymer materials derived from polymerization in AAO templates in nanotechnology applications, is also highlighted. Finally, the review is concluded with a general discussion outlining the challenges that remain in the field.
在过去几年中,多孔材料纳米腔内单体的聚合反应已得到深入研究和发展,从而能够合成具有定制形态、化学结构和功能的聚合物。因此,这是一个具有至关重要的科学和技术意义的课题,然而,此前尚未从总体角度进行分析。本综述报告了多孔材料内空间受限聚合反应的现状,重点关注阳极氧化铝(AAO)模板的应用。它包括对用作纳米反应器的AAO模板的描述。聚合反应根据聚合机理进行分类。其中包括电化学聚合、自由基聚合、逐步聚合和原子转移自由基聚合(ATRP)。对于每种聚合机理,还根据所用单体的性质进行了进一步细分。受限AAO几何结构中“原位”聚合反应的其他方面包括:转化率监测、动力学研究、建模和聚合物表征。除了对聚合过程本身的描述外,还强调了AAO模板中聚合衍生的聚合物材料在纳米技术应用中的使用。最后,综述以一般性讨论结束,概述了该领域仍然存在的挑战。