Department of Chemistry, Tulane University, New Orleans, LA, USA.
Nat Chem. 2020 May;12(5):433-444. doi: 10.1038/s41557-020-0440-5. Epub 2020 Apr 6.
Unlike their more common linear counterparts, cyclic polymers have a ring-like structure and a lack of chain ends. Because of their topology, cyclic polymers exhibit a unique set of properties when compared with linear or branched macromolecules. For example, cyclic homopolymers exhibit a reduced hydrodynamic volume and a slower degradation profile compared with their linear analogues. Cyclic block copolymers self-assemble into compact nanostructures, as illustrated by their reduced domain spacing when cast into thin films and their reduced micellar size in solution. Although methods for preparing well-defined cyclic polymers have only been available since 1980, the extensive utilization of the cyclic topology in nature highlights the vital role that a cyclic architecture can play in imparting valuable physical properties, such as increased chemical stability or propensity towards self-assembly. This Review describes the major developments in the synthesis of cyclic polymers and provides an overview of their fundamental physical properties. In this context, preliminary studies exploring potential applications will be critically assessed and the remaining challenges for the field delineated.
与更为常见的线性聚合物相比,环状聚合物具有环状结构和缺少链末端。由于其拓扑结构,环状聚合物在与线性或支化大分子相比时表现出独特的一系列性质。例如,环状均聚物的流体力学体积减小,降解速度较慢。环状嵌段共聚物自组装成紧密的纳米结构,这可以通过它们在薄膜中形成的较小畴间距和在溶液中的较小胶束尺寸来证明。尽管具有明确结构的环状聚合物的制备方法自 1980 年才出现,但自然界中对环状拓扑结构的广泛利用突出了环状结构在赋予有价值的物理性质方面的重要作用,例如增加的化学稳定性或自组装倾向。本文综述了环状聚合物的合成方法的主要进展,并概述了它们的基本物理性质。在这方面,将批判性地评估探索潜在应用的初步研究,并阐述该领域的剩余挑战。