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在可见光下实现含动态二碲键的超韧性水分散“活性”超分子聚合物的快速自修复和再加工

Achieving Fast Self-Healing and Reprocessing of Supertough Water-Dispersed "Living" Supramolecular Polymers Containing Dynamic Ditelluride Bonds under Visible Light.

作者信息

Fan Wuhou, Jin Yong, Shi Liangjie, Du Weining, Zhou Rong, Lai Shuanquan, Shen Yichao, Li Yupeng

机构信息

National Engineering Laboratory for Clean Technology of Leather Manufacture , Sichuan University , No. 24 South Section 1, Yihuan Road , Chengdu 610065 , China.

The Key Laboratory of Leather Chemistry and Engineering of Ministry of Education , Sichuan University , No. 24 South Section 1, Yihuan Road , Chengdu 610065 , China.

出版信息

ACS Appl Mater Interfaces. 2020 Feb 5;12(5):6383-6395. doi: 10.1021/acsami.9b18985. Epub 2020 Jan 21.

Abstract

It is very challenging to achieve polymers that are mechanically robust and fast self-healable at ambient conditions, which are highly desirable for smart materials of the next-generation. Herein, combining dynamic ditelluride bonds and 2-ureido-4[1]-pyrimidinone (UPy) moieties in the main chains, a novel type of visible-light-induced self-healing water-dispersed supramolecular polymers (DTe-WSPs) with outstanding healing properties were developed. The prepared DTe-WSPs emulsions showed excellent emulsion stability, and highly transparent DTe-WSPs films obtained from these emulsions exhibited much improved mechanical properties and fast recoverability after the incorporation of UPy groups, owing to the physical cross-links formed by quadruple hydrogen-bonded UPy moieties. Supertoughness (105.2 MJ m) and fast self-healability under visible light (healing efficiency of 85.6% within 10 min) could be achieved simultaneously with the adjustment of the ditelluride content and the UPy content, and the toughness of our polymers is higher than those of the reported ambient temperature self-healable polymers. The visible-light-induced ditelluride metathesis is a predominant factor in the healing process of DTe-WSPs, and the ditelluride metathesis triggered by photothermy and hydrogen bonding could also afford the ultimate healing result. Meanwhile, DTe-WSPs can be reprocessed using visible light, providing a facile way to process polymers at mild conditions. To our surprise, the "living" DTe-WSPs exhibited the ability to initiate the polymerization of vinyl monomers under visible light, which is first reported for water-dispersed self-healing polymers. We considered the elaborated design philosophy, based on the readily available, clean, safe, and easily manipulated visible light, which can not only provide inspiration for preparing fast ambient temperature self-healing and reprocessing polymer materials with robust mechanical properties but also develop a new macroinitiator to initiate the ambient temperature polymerization of vinyl monomers.

摘要

要实现机械性能坚固且在环境条件下能快速自愈的聚合物极具挑战性,而这对于下一代智能材料来说是非常理想的。在此,通过在主链中结合动态二碲键和2-脲基-4[1]-嘧啶酮(UPy)基团,开发出了一种新型的可见光诱导自愈的水分散超分子聚合物(DTe-WSPs),其具有出色的自愈性能。所制备的DTe-WSPs乳液表现出优异的乳液稳定性,由这些乳液得到的高度透明的DTe-WSPs薄膜在引入UPy基团后,由于四重氢键连接的UPy基团形成了物理交联,其机械性能得到显著改善且具有快速恢复性。通过调整二碲化物含量和UPy含量,可以同时实现超韧性(105.2 MJ m)和可见光下的快速自愈性(10分钟内自愈效率达85.6%),并且我们的聚合物的韧性高于已报道的室温自愈聚合物。可见光诱导的二碲化物复分解是DTe-WSPs愈合过程中的主要因素,光热和氢键引发的二碲化物复分解也能实现最终的愈合效果。同时,DTe-WSPs可以用可见光进行再加工,为在温和条件下加工聚合物提供了一种简便方法。令我们惊讶的是,“活性”DTe-WSPs在可见光下表现出引发乙烯基单体聚合的能力,这是首次报道的水分散自愈聚合物具有的特性。我们基于易于获得、清洁、安全且易于操作的可见光的精心设计理念,不仅能为制备具有坚固机械性能的快速室温自愈和再加工聚合物材料提供灵感,还能开发一种新型的大分子引发剂来引发乙烯基单体的室温聚合。

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