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具有可重复化学循环性的合成聚合物系统。

A synthetic polymer system with repeatable chemical recyclability.

机构信息

Department of Chemistry, Colorado State University, Fort Collins, CO 80523-1872, USA.

出版信息

Science. 2018 Apr 27;360(6387):398-403. doi: 10.1126/science.aar5498.

Abstract

The development of chemically recyclable polymers offers a solution to the end-of-use issue of polymeric materials and provides a closed-loop approach toward a circular materials economy. However, polymers that can be easily and selectively depolymerized back to monomers typically require low-temperature polymerization methods and also lack physical properties and mechanical strengths required for practical uses. We introduce a polymer system based on γ-butyrolactone (GBL) with a trans-ring fusion at the α and β positions. Such trans-ring fusion renders the commonly considered as nonpolymerizable GBL ring readily polymerizable at room temperature under solvent-free conditions to yield a high-molecular weight polymer. The polymer has enhanced thermostability and can be repeatedly and quantitatively recycled back to its monomer by thermolysis or chemolysis. Mixing of the two enantiomers of the polymer generates a highly crystalline supramolecular stereocomplex.

摘要

化学可回收聚合物的发展为聚合物材料的使用末端问题提供了一种解决方案,并为循环材料经济提供了一种闭环方法。然而,能够容易且选择性地解聚回单体的聚合物通常需要低温聚合方法,并且还缺乏实际用途所需的物理性质和机械强度。我们介绍了一种基于γ-丁内酯(GBL)的聚合物体系,其在α和β位置具有反式环融合。这种反式环融合使得通常被认为不可聚合的 GBL 环在无溶剂条件下在室温下容易聚合,从而得到高分子量聚合物。该聚合物具有增强的热稳定性,并且可以通过热解或化学解聚反复且定量地回收回其单体。两种聚合物对映异构体的混合生成高度结晶的超分子立体复合物。

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