Tian Sidan, Yue Qiang, Liu Chenchen, Li Mengyang, Yin Mingming, Gao Yuting, Meng Fanling, Tang Ben Zhong, Luo Liang
National Engineering Research Center for Nanomedicine, College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan 430074, China.
Department of Chemistry and Hong Kong Branch of Chinese National Engineering Research Center for Tissue Restoration and Reconstruction, The Hong Kong University of Science & Technology, Clear Water Bay, Kowloon, Hong Kong 999077, P. R. China.
J Am Chem Soc. 2021 Jul 14;143(27):10054-10058. doi: 10.1021/jacs.1c04611. Epub 2021 Jun 28.
The rapid development of digital society and artificial intelligence has triggered explosive demands for specialty plastics, especially conjugated polymers that are instrumental for flexible electronics and smart devices. The recycling and degradation of postconsumer conjugated polymers have become more important than ever to reduce the pressure to the environment. Here we report the discovery of an environmentally self-degradable conjugated polymer poly(deca-4,6-diynedioic acid), or PDDA. PDDA is stable in the dark or without oxygen when used as a functional material. However, when exposed to sunlight and air after the service life, PDDA disintegrates rapidly and fully decomposes through photooxidation in a week, yielding biocompatible, value-added succinic acid as a major degradation product. The complete degradation of PDDA into green upcycling products by sunlight in air, without leaving any microplastics, not only renders a pioneering paradigm of environmentally self-degradable conjugated polymers but also inspires developing effective strategies to completely degrade postconsumer conjugated polymers in a natural environment.
数字社会和人工智能的快速发展引发了对特种塑料的爆发式需求,尤其是对柔性电子和智能设备至关重要的共轭聚合物。消费后共轭聚合物的回收和降解对于减轻环境压力变得比以往任何时候都更加重要。在此,我们报告了一种环境自降解共轭聚合物聚(癸-4,6-二炔二酸),即PDDA的发现。当用作功能材料时,PDDA在黑暗中或无氧条件下是稳定的。然而,在使用寿命结束后暴露于阳光和空气中时,PDDA会迅速分解,并在一周内通过光氧化完全分解,产生具有生物相容性的增值琥珀酸作为主要降解产物。PDDA在空气中通过阳光完全降解为绿色升级产品,不留下任何微塑料,这不仅为环境自降解共轭聚合物提供了一个开创性的范例,也激发了开发有效策略以在自然环境中完全降解消费后共轭聚合物的灵感。