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强化交联聚合物的指导原则:控制流动性的轮烷交联剂的合成与应用

A Guiding Principle for Strengthening Crosslinked Polymers: Synthesis and Application of Mobility-Controlling Rotaxane Crosslinkers.

作者信息

Sawada Jun, Aoki Daisuke, Otsuka Hideyuki, Takata Toshikazu

机构信息

Department of Chemical Science and Engineering, Tokyo Institute of Technology, 2-12-1, O-okayama, Meguro, Tokyo, Japan.

出版信息

Angew Chem Int Ed Engl. 2019 Feb 25;58(9):2765-2768. doi: 10.1002/anie.201813439. Epub 2019 Jan 25.

Abstract

Three component mobility controlling vinylic rotaxane crosslinkers with two radically polymerizable vinyl groups (RC_Rs) were synthesized to prove that the mobility of the components of the RC_Rs plays a crucial role in determining the properties of rotaxane-crosslinked polymers (RCPs). RC_Rs (R=H, Me, or Et) were obtained from living ring-opening polymerization. RCP_Et was prepared using RC_Et, which exhibits the lowest component mobility. The low component mobility is reflected in inferior mechanical strength and stretching ability in tensile stress tests compared to components with good (R=Me) and high (R=H) mobility. However, RCP_Et exhibited significantly higher stress and strain values than the corresponding covalently crosslinked polymers (CCP_Rs). These results indicate that a suitable component mobility substantially enhances the mechanical strength of RCPs. This behavior could serve as a guiding principle for the molecular design of advanced RCs.

摘要

合成了具有两个可自由基聚合乙烯基的三组分流动性控制乙烯基轮烷交联剂(RC_Rs),以证明RC_Rs各组分的流动性在决定轮烷交联聚合物(RCPs)性能方面起着关键作用。RC_Rs(R = H、Me或Et)通过活性开环聚合获得。使用具有最低组分流动性的RC_Et制备了RCP_Et。与具有良好(R = Me)和高(R = H)流动性的组分相比,低组分流动性在拉伸应力测试中表现为较差的机械强度和拉伸能力。然而,RCP_Et表现出比相应的共价交联聚合物(CCP_Rs)显著更高的应力和应变值。这些结果表明,合适的组分流动性可显著提高RCPs的机械强度。这种行为可为先进轮烷的分子设计提供指导原则。

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