Nothling Mitchell D, Fu Qiang, Reyhani Amin, Allison-Logan Stephanie, Jung Kenward, Zhu Jian, Kamigaito Masami, Boyer Cyrille, Qiao Greg G
Polymer Science Group Department of Chemical Engineering The University of Melbourne Parkville VIC 3010 Australia.
Centre for Technology in Water and Wastewater Treatment (CTWW) School of Civil and Environmental Engineering University of Technology Sydney Ultimo NSW 2007 Australia.
Adv Sci (Weinh). 2020 Aug 26;7(20):2001656. doi: 10.1002/advs.202001656. eCollection 2020 Oct.
The development of advanced materials based on well-defined polymeric architectures is proving to be a highly prosperous research direction across both industry and academia. Controlled radical polymerization techniques are receiving unprecedented attention, with reversible-deactivation chain growth procedures now routinely leveraged to prepare exquisitely precise polymer products. Reversible addition-fragmentation chain transfer (RAFT) polymerization is a powerful protocol within this domain, where the unique chemistry of thiocarbonylthio (TCT) compounds can be harnessed to control radical chain growth of vinyl polymers. With the intense recent focus on RAFT, new strategies for initiation and external control have emerged that are paving the way for preparing well-defined polymers for demanding applications. In this work, the cutting-edge innovations in RAFT that are opening up this technique to a broader suite of materials researchers are explored. Emerging strategies for activating TCTs are surveyed, which are providing access into traditionally challenging environments for reversible-deactivation radical polymerization. The latest advances and future perspectives in applying RAFT-derived polymers are also shared, with the goal to convey the rich potential of RAFT for an ever-expanding range of high-performance applications.
基于明确聚合物结构的先进材料的开发,正成为工业界和学术界一个极为繁荣的研究方向。可控自由基聚合技术正受到前所未有的关注,可逆失活链增长过程如今已被常规用于制备极为精确的聚合物产品。可逆加成-断裂链转移(RAFT)聚合是该领域一种强大的方法,其中硫代羰基硫(TCT)化合物的独特化学性质可用于控制乙烯基聚合物的自由基链增长。随着近期对RAFT的高度关注,出现了新的引发和外部控制策略,为制备用于苛刻应用的明确聚合物铺平了道路。在这项工作中,探索了RAFT领域的前沿创新,这些创新正将该技术向更广泛的材料研究人员群体开放。对激活TCT的新兴策略进行了综述,这些策略为进入传统上具有挑战性的可逆失活自由基聚合环境提供了途径。还分享了应用RAFT衍生聚合物的最新进展和未来展望,目的是传达RAFT在不断扩大的高性能应用范围内的巨大潜力。