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Supramolecular Polymerization: A Conceptual Expansion for Innovative Materials

机译:超分子聚合:创新材料的概念性扩展

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The research field of supramolecular polymerization has dramatically progressed in the last three decades, and much deeper insights into its new mechanisms, including kinetic and thermodynamic aspects, have become available. Furthermore, a much wider variety of noncovalent interactions have been exploited for connecting monomers, and the importance of multivalency and the concept of pathway complexity have also been recognized. To control supramolecular polymerization, chain-growth supramolecular polymerization, seeded supramolecular polymerization, and sequence-specific supramolecular copolymerization, which are essential for precise macromolecular synthesis, are now possible. The stereochemical aspects of supramolecular polymerization using chiral monomers have also been studied extensively, contributing to the understanding of the kinetic aspects of supramolecular polymerization. Nanotubular supramolecular polymerization, forming rolled-up 2D architectures, in contrast to linear supramolecular polymerization, has also been developed. Through the conceptual expansion of supramolecular polymerization, a much wider variety of monomers and media have become usable, which will enable many groundbreaking applications that cannot be attained by conventional covalent polymerization. (C) 2020 Published by Elsevier B.V.
机译:在过去的三十年中,超分子聚合的研究领域已经显着进展,并且进入其新机制的更深层次,包括动力学和热力学方面。此外,已经利用了多种更广泛的非共价相互作用来连接单体,并且也已经认识到多价和途径复杂性的概念的重要性。为了控制超分子聚合,链生长超分子聚合,种子的超分子聚合,以及序列特异性的超分子共聚,这对于精确的大分子合成至关重要,现在是必不可少的。使用手性单体的超分子聚合的立体化学方面已经广泛研究,有助于了解超分子聚合的动力学方面。也开发了与线性超分子聚合相反,形成卷起的2D架构,形成卷起的2D架构。通过超分子聚合的概念性扩张,各种单体和培养基是可用的,这将使许多不能通过常规共价聚合来获得的突破性应用。 (c)2020由elsevier b.v发布。

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