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Polymer Networks: From Plastics and Gels to Porous Frameworks

机译:聚合物网络:从塑料和凝胶到多孔框架

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摘要

Polymer networks, which are materials composed of many smaller components-referred to as "junctions" and "strands"-connected together via covalent or non-covalent/supramolecular interactions, are arguably the most versatile, widely studied, broadly used, and important materials known. From the first commercial polymers through the plastics revolution of the 20(th) century to today, there are almost no aspects of modern life that are not impacted by polymer networks. Nevertheless, there are still many challenges that must be addressed to enable a complete understanding of these materials and facilitate their development for emerging applications ranging from sustainability and energy harvesting/storage to tissue engineering and additive manufacturing. Here, we provide a unifying overview of the fundamentals of polymer network synthesis, structure, and properties, tying together recent trends in the field that are not always associated with classical polymer networks, such as the advent of crystalline "framework" materials. We also highlight recent advances in using molecular design and control of topology to showcase how a deep understanding of structure-property relationships can lead to advanced networks with exceptional properties.
机译:通过共价或非共价/超分子相互作用将具有许多较小成分组成的材料组成的材料,其是由许多较小的成分组成的材料和“链条”和“链中”,可以是最多的多功能,广泛研究,广泛使用的和重要材料已知。通过第一批通过第20世纪至今的塑料革命来源,现代生活几乎没有受到聚合物网络的影响。尽管如此,仍有许多挑战必须解决,以便完全了解这些材料,并促进他们对从可持续性和能量收集/储存到组织工程和添加剂制造的新兴应用的发展。在这里,我们提供了聚合物网络合成,结构和性质的基础统一概述,将近期与经典聚合物网络的领域的趋势捆绑在一起,例如结晶“框架”材料的出现。我们还强调了最近利用拓扑的拓展,展示了对结构性质关系的深刻理解,可以导致具有卓越特性的先进网络。

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