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超强碱介导的全芳香主链热致液晶聚合物的降解

Degradation of a Wholly Aromatic Main-Chain Thermotropic Liquid-Crystalline Polymer Mediated by Superbases.

作者信息

Watanabe Yuya, Fukushima Kazuki, Kato Takashi

机构信息

Department of Chemistry and Biotechnology, School of Engineering, The University of Tokyo, Hongo, Bunkyo-ku, Tokyo 113-8656, Japan.

Japan Science and Technology Agency (JST), PRESTO, Honcho, Kawaguchi, Saitama 332-0012, Japan.

出版信息

JACS Au. 2024 Jul 16;4(8):2944-2956. doi: 10.1021/jacsau.4c00286. eCollection 2024 Aug 26.

Abstract

Plastic circular economy needs to be established to solve environmental issues related to plastic waste. Superengineering plastics such as liquid-crystalline (LC) polymers exhibit excellent thermal and mechanical properties, resulting in poor degradability in natural environment. Herein, we report the degradation of a wholly aromatic thermotropic LC polyester, poly(4-hydroxybenzoic acid--6-hydroxy-2-naphthoic acid) (Vectra) mediated by superbases. Methanolysis and hydrolysis of Vectra yield its monomeric compounds, 4-hydroxybenzoic acid, 6-hydroxy-2-naphthoic acid, and their methyl esters. Among several transesterification catalysts explored, 1,5,7-triazabicylco[4.4.0]dec-5-ene (TBD) is the most suitable for the methanolysis of Vectra. The complete degradation of Vectra is achieved under reflux. The degradation proceeds heterogeneously via a surface erosion mechanism, preferentially starting from less chain-packed regions. Model reactions using aryl arylates reveal that monomeric compound-superbase complexes could mediate the cleavage of the ester bonds in both homogeneous and heterogeneous systems. The ester bonds of Vectra have inherent poor reactivity and are protected by oriented robust structures of the polymer. Nevertheless, the superbases enable the degradation of Vectra via the cleavage of the ester bonds by methanol. These outcomes open the way for recycling high-performance plastics as well as demonstrate the feasibility of recovering precious aromatic compounds from plastic waste as aromatic feedstock.

摘要

需要建立塑料循环经济来解决与塑料垃圾相关的环境问题。诸如液晶(LC)聚合物之类的超级工程塑料具有优异的热性能和机械性能,导致其在自然环境中的降解性较差。在此,我们报道了由超强碱介导的全芳香热致液晶聚酯聚(4-羟基苯甲酸-6-羟基-2-萘甲酸)(Vectra)的降解。Vectra的甲醇解和水解产生其单体化合物4-羟基苯甲酸、6-羟基-2-萘甲酸及其甲酯。在探索的几种酯交换催化剂中,1,5,7-三氮杂双环[4.4.0]癸-5-烯(TBD)最适合Vectra的甲醇解。在回流条件下实现了Vectra的完全降解。降解通过表面侵蚀机制以非均相方式进行,优先从链堆积较少的区域开始。使用芳基芳酸酯的模型反应表明,单体化合物-超强碱络合物可以在均相和非均相体系中介导酯键的断裂。Vectra的酯键固有地具有较差的反应活性,并受到聚合物定向坚固结构的保护。然而,超强碱能够通过甲醇对酯键的断裂实现Vectra的降解。这些成果为高性能塑料的回收开辟了道路,同时也证明了从塑料垃圾中回收珍贵芳香族化合物作为芳香族原料的可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/439a/11350567/6ddcb8809a60/au4c00286_0001.jpg

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