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通过内部硼-氮配位提高稳定性的基于硼酸酯的可降解交联聚合物

Boronic Ester Based Vitrimers with Enhanced Stability via Internal Boron-Nitrogen Coordination.

作者信息

Zhang Xiaoting, Wang Shujuan, Jiang Zikang, Li Yu, Jing Xinli

机构信息

School of Chemistry, Xi'an Jiaotong University, Xi'an, Shaanxi 710049, P. R. China.

MOE Key Laboratory for Nonequilibrium Synthesis and Modulation of Condensed Matter, Xi'an, Shaanxi 710049, P. R. China.

出版信息

J Am Chem Soc. 2020 Dec 30;142(52):21852-21860. doi: 10.1021/jacs.0c10244. Epub 2020 Dec 17.

Abstract

Boron-containing polymers have many applications resulting from their prominent properties. Organoboron species with reversible B-O bonds have been successfully employed for the fabrication of various self-healing/healable and reprocessable polymers. However, the application of the polymers containing boronic ester or boroxine linkages is limited because of their instability to water. Herein, we report the hydrolytic stability and dynamic covalent chemistry of the nitrogen-coordinating cyclic boronic diester (NCB) linkages, and a new class of vitrimers based on NCB linkages is developed through the chemical reactions of reactive hydrogen with isocyanate. Thermodynamic and kinetic studies demonstrated that NCB linkages exhibit enhanced water and heat resistance, whereas the exchange reactions between NCB linkages can take place upon heating without any catalyst. The model compounds of NCBC-X1 and NCBC-X2 containing a urethane group and urea group, respectively, also showed higher hydrolytic stability compared to that of conventional boronic esters. Polyurethane vitrimers and poly(urea-urethane) vitrimers based on NCB linkages exhibited excellent solvent resistance and mechanical properties like general thermosets, which can be repaired, reprocessed, and recycled via the transesterification of NCB linkages upon heating. Especially, vitrimers based on NCB linkages presented improved stability to water and heat compared to those through conventional boronic esters because of the existence of N → B internal coordination. We anticipate that this work will provide a new strategy for designing the next generation of sustainable materials.

摘要

含硼聚合物因其突出的性能而有许多应用。具有可逆B-O键的有机硼物种已成功用于制备各种自修复/可修复和可再加工的聚合物。然而,含硼酸酯或硼氧烷键的聚合物由于其对水的不稳定性,应用受到限制。在此,我们报道了氮配位环状硼酸二酯(NCB)键的水解稳定性和动态共价化学,并通过活性氢与异氰酸酯的化学反应开发了一类基于NCB键的新型可 vitrimer 材料。热力学和动力学研究表明,NCB键表现出增强的耐水性和耐热性,而NCB键之间的交换反应在加热时无需任何催化剂即可发生。分别含有氨基甲酸酯基团和脲基团的NCBC-X1和NCBC-X2模型化合物,与传统硼酸酯相比,也表现出更高的水解稳定性。基于NCB键的聚氨酯 vitrimer 材料和聚(脲-聚氨酯)vitrimer 材料表现出优异的耐溶剂性和机械性能,类似于普通热固性材料,可通过加热时NCB键的酯交换反应进行修复、再加工和回收。特别是,由于存在N→B内配位,基于NCB键的vitrimer材料与通过传统硼酸酯制备的材料相比,对水和热的稳定性有所提高。我们预计这项工作将为设计下一代可持续材料提供新的策略。

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