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Star Polymers. | LitMetric

Star Polymers.

Chem Rev

Polymer Science Group, Department of Chemical and Biomolecular Engineering, The University of Melbourne, Parkville, Victoria 3010, Australia.

Published: June 2016

AI Article Synopsis

  • Recent advancements in polymerization techniques have made it easier to create complex star polymers, which have unique properties not found in simple linear polymers.
  • The article reviews the synthesis methods, characterization techniques, and current applications of star polymers, highlighting their importance in life sciences and nanotechnology.
  • The authors aim to encourage further research into star polymers and their potential for commercialization, envisioning their growing role in materials science and industry.

Article Abstract

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.

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Source
http://dx.doi.org/10.1021/acs.chemrev.6b00008DOI Listing

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