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精密聚合物的先进合成、结构表征及功能应用

Advanced Synthesis, Structural Characterization, and Functional Applications of Precision Polymers.

作者信息

Cen Jie, Hou Mingxuan, Hu Jinming, Liu Shiyong

机构信息

Key Laboratory of Precision and Intelligent Chemistry, Department of Polymer Science and Engineering, School of Chemistry and Materials Science, University of Science and Technology of China, Hefei, Anhui, 230026, China.

出版信息

Chemistry. 2024 Oct 8;30(56):e202401911. doi: 10.1002/chem.202401911. Epub 2024 Sep 20.

Abstract

In the realm of biological macromolecules, entities such as nucleic acids and proteins are distinguished by their homochirality, consistently defined chain lengths, and integral sequence-dependent functionalities. Historically, these refined attributes have eluded traditional synthetic polymers, which often exhibit wide variabilities in chain lengths, limited batch-to-batch reproducibility, and stochastic monomer arrangements. Bridging this divide represents a pivotal challenge within the domain of polymer science - a challenge that the burgeoning discipline of precision polymer chemistry is poised to address. Recent advancements have yielded precision polymers that boast prescribed monomer sequences and narrow molecular weight distributions, heralding a new era for developing model systems to decipher structure-property correlations within functional polymers, analogous to those within biological matrices. This review discusses the innovative liquid-phase and solid-phase synthesis techniques for creating precision polymers and the advanced characterization tools essential for dissecting their structure and properties. We highlight potential applications in self-assembly, catalysis, data storage, imaging, and therapy, and provide insights into the future challenges and directions of precision polymers.

摘要

在生物大分子领域,核酸和蛋白质等实体以其同手性、一致的链长以及完整的序列依赖性功能而著称。从历史上看,这些精细的属性是传统合成聚合物所不具备的,传统合成聚合物往往链长变化很大,批次间的可重复性有限,且单体排列具有随机性。弥合这一差距是聚合物科学领域的一项关键挑战——新兴的精密聚合物化学学科正准备应对这一挑战。最近的进展已产生了具有规定单体序列和窄分子量分布的精密聚合物,开创了一个新时代,即开发模型系统以解读功能聚合物内部的结构-性能关系,类似于生物基质中的关系。本综述讨论了用于制备精密聚合物的创新液相和固相合成技术以及剖析其结构和性能所必需的先进表征工具。我们强调了在自组装、催化、数据存储、成像和治疗方面的潜在应用,并深入探讨了精密聚合物未来面临的挑战和发展方向。

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