Polymer Science Group, Department of Chemical and Biomolecular Engineering, The University of Melbourne , Parkville, Victoria 3010, Australia.
Centre for Advanced Macromolecular Design (CAMD) and Australian Centre for NanoMedicine, School of Chemical Engineering, UNSW Australia , Sydney, New South Wales 2052, Australia.
Chem Rev. 2016 Jun 22;116(12):6743-836. doi: 10.1021/acs.chemrev.6b00008. Epub 2016 Jun 14.
Recent advances in controlled/living polymerization techniques and highly efficient coupling chemistries have enabled the facile synthesis of complex polymer architectures with controlled dimensions and functionality. As an example, star polymers consist of many linear polymers fused at a central point with a large number of chain end functionalities. Owing to this exclusive structure, star polymers exhibit some remarkable characteristics and properties unattainable by simple linear polymers. Hence, they constitute a unique class of technologically important nanomaterials that have been utilized or are currently under audition for many applications in life sciences and nanotechnologies. This article first provides a comprehensive summary of synthetic strategies towards star polymers, then reviews the latest developments in the synthesis and characterization methods of star macromolecules, and lastly outlines emerging applications and current commercial use of star-shaped polymers. The aim of this work is to promote star polymer research, generate new avenues of scientific investigation, and provide contemporary perspectives on chemical innovation that may expedite the commercialization of new star nanomaterials. We envision in the not-too-distant future star polymers will play an increasingly important role in materials science and nanotechnology in both academic and industrial settings.
近年来,控制/活性聚合技术和高效偶联化学的发展,使得具有可控尺寸和功能的复杂聚合物结构的简便合成成为可能。例如,星形聚合物由许多线性聚合物在中心点融合而成,具有大量链末端官能团。由于这种独特的结构,星形聚合物表现出一些简单线性聚合物无法达到的显著特性和性能。因此,它们构成了一类独特的、在生命科学和纳米技术中有许多应用或正在试用的技术重要的纳米材料。本文首先全面总结了星形聚合物的合成策略,然后综述了星形大分子的合成和表征方法的最新进展,最后概述了星形聚合物的新兴应用和当前的商业用途。这项工作的目的是促进星形聚合物的研究,为科学研究开辟新途径,并提供关于化学创新的现代观点,从而可能加速新型星形纳米材料的商业化。我们预计,在不久的将来,星形聚合物在学术和工业领域的材料科学和纳米技术中将发挥越来越重要的作用。