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具有高效自催化作用的双交联乙烯基动态聚合物实现三重形状记忆性能。

Dual Cross-linked Vinyl Vitrimer with Efficient Self-Catalysis Achieving Triple-Shape-Memory Properties.

机构信息

Key Laboratory of Functional Polymer Materials of the Ministry of Education and College of Chemistry, Nankai University, Tianjin, 300071, P. R. China.

Department of Polymer Science and Engineering, Nanjing University, Nanjing, 210093, P. R. China.

出版信息

Macromol Rapid Commun. 2019 Oct;40(19):e1900313. doi: 10.1002/marc.201900313. Epub 2019 Aug 8.

Abstract

As an emerging class of dynamic cross-linked network, vitrimers have attracted much attention due to the combination of mechanical advantages of thermosets and recyclability of thermoplastics at an elevated temperature. In particular, most vitrimers with multi-shape memory properties usually involve more than one thermal transition or molecular switch, which might pose a challenge for facile sample fabrication and potentially limits their applications. In pursuit of a more universal and simple route, utilizing commercially available and inexpensive reagents to prepare shape-memory vitrimers with dual cross-linked network from vinyl monomer-derived prepolymers is reported here. Copolymerization of desired vinyl monomers gives prepolymers containing carboxyl and zinc carboxylate groups, which are later converted into vitrimers in a single step by post-curing with diglycidylether of bisphenol A. The Zn ions can not only act as physical crosslinking points through ionic coordination interactions, thus providing the triple-shape-memory properties, but also play the role of catalyst to activate transesterification in the dynamic covalent network. This new self-catalyzed vitrimer has excellent transesterification efficiency, triple-shape-memory properties, and can be sufficiently healed and reprocessed at an elevated temperature. The proposed molecular design of self-catalyzed materials opens a new avenue toward commercially relevant fabrication of high-performance vitrimers with multiple shape-memory properties.

摘要

作为一类新兴的动态交联网络,由于热固性塑料的机械优势和高温下热塑性塑料的可回收性相结合, vitrimers 引起了广泛关注。特别是,大多数具有多重形状记忆性能的 vitrimers 通常涉及不止一个热转变或分子开关,这可能会给易于制备样品带来挑战,并可能限制其应用。为了追求更通用和简单的方法,本文报道了利用市售且廉价的试剂,从乙烯基单体衍生的预聚物制备具有双交联网络的形状记忆 vitrimers。所需的乙烯基单体的共聚赋予含有羧基和锌羧酸盐基团的预聚物,随后通过用双酚 A 的二缩水甘油醚后固化,将其一步转化为 vitrimers。Zn 离子不仅可以通过离子配位相互作用充当物理交联点,从而提供三重形状记忆性能,而且还可以充当催化剂来激活动态共价网络中的酯交换反应。这种新的自催化 vitrimer具有优异的酯交换效率、三重形状记忆性能,并且可以在高温下充分修复和再加工。这种自催化材料的分子设计为具有多种形状记忆性能的高性能 vitrimers 的商业相关制造开辟了新途径。

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