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首页> 外文期刊>Angewandte Chemie >Tethering Flexible Polymers to Crystalline Porous Materials: A Win-Win Hybridization Approach
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Tethering Flexible Polymers to Crystalline Porous Materials: A Win-Win Hybridization Approach

机译:将柔性聚合物呈晶体多孔材料:双赢杂交方法

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摘要

Crystalline porous materials (CPMs) have been widely studied over the past few decades due to their well-defined, customizable, and porous structures. However, the limited stability and machinability restrict their particle applications. Recently, a new trend to use hybrid strategies to bridge the gap between CPMs and flexible polymers has emerged as an effective solution to tackle the above issues. Polymers can be either cross-linked within the framework or anchored to the outer surface of the materials, that endow CPMs with polymer features, such as flexibility, ductility, and machinability. Such resulting polymer-tethered CPMs (named as polyCPMs) have demonstrated improved performances in many application scopes such as membrane separation, heterogeneous catalysis and smart response. This minireview highlights state of the art for the hybridization strategies of CPMs with flexible polymers, and provide a perspective on their potential applications and future directions.
机译:结晶多孔材料(CPM)由于其良好的定义、可定制和多孔结构,在过去几十年中得到了广泛的研究。然而,有限的稳定性和可加工性限制了它们的应用。最近,一种新的趋势是使用混合策略来弥合CPM和柔性聚合物之间的差距,这是解决上述问题的有效方法。聚合物可以在骨架内交联,也可以固定在材料的外表面,这赋予CPM聚合物特性,如柔韧性、延展性和可加工性。由此产生的聚合物栓系CPM(简称PolyPMS)在膜分离、多相催化和智能响应等许多应用领域表现出了更好的性能。本文着重介绍了CPM与柔性聚合物杂交策略的研究现状,并对其潜在应用和未来发展方向进行了展望。

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