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Organocatalysis applied to the ring-opening polymerization of beta-lactones: A brief overview

机译:适用于β-内酯的开环聚合的有机偶联:简要概述

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Organocatalysis offers a number of prospects in the polymer community and presents advantages over metal based and bio-organic methods. The use of organic molecules for performing chemical reactions is not a new concept, and any research into organocatalytic reactions builds on a respected history. Compared to the organocatalysis of large lactones, which began in the early 2000s, the examples presented here will demonstrate that few metal-free initiating systems had been applied to beta-lactones well before the beginning of the current millennium. These metal-free initiating systems present indisputable advantages over metal-based processes. In the following paper, ring-opening polymerizations (ROPs) of various beta-lactones for the preparation of poly(hydroxyalkanoate)s will be presented, as will the types of mechanisms involved, that is, zwitterionic and anionic, and cationic or supramolecular-based ROPs. The advantages and drawbacks of the different technics will be discussed in the domain, which, for us, is important in the overall production of bioplastics. (c) 2019 Wiley Periodicals, Inc. J. Polym. Sci., Part A: Polym. Chem. 2019, 57, 657-672
机译:有机成分在聚合物界提供了许多前景,并呈现优于金属基和生物有机方法。使用有机分子用于进行化学反应不是一种新的概念,并且对有机催化反应的任何研究都在受到尊重的历史上。与大乳酰胺的有机聚合相比,在2000年代初期开始,本文介绍的实施例将证明在电流千年开始之前,将少量的无金属引发系统应用于β-内酯。这些无金属启动系统具有与基于金属的过程的无可争议的优点。在下文中,将提出用于制备聚(羟基烷酸酯)S的各种β-内酯的开环聚合(ROPS),如涉及的机制类型,即两性离子和阴离子,和阳离子或超分子 - 基于ROP。将在该领域中讨论不同技术的优点和缺点,对于我们来说,这对美国的总体生产是重要的。 (c)2019 Wiley期刊,Inc.J.Colom。 SCI。,A部分:polym。化学。 2019,57,657-672

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