Key Laboratory of Advanced Light Conversion Materials and Biophotonics, Department of Chemistry, Renmin University of China, Beijing 100872, People's Republic of China.
ACS Macro Lett. 2022 Jul 19;11(7):868-874. doi: 10.1021/acsmacrolett.2c00204. Epub 2022 Jun 28.
Polyurethane (PU) thermosets offer great favors to our daily life on account of their excellent mechanical, physical, and chemical properties as well as appreciable biocompatibility. Nevertheless, PU waste is increasingly causing environmental and health-related problems as it is mostly resistant to chemical degradation under mild conditions. Herein, we report a kind of PU thermoset with silaketal leakages in its main chains to enable polymer degradation in response to weak acids, even in edible vinegar. The degradation rate is significantly influenced by the alkyl substituents on the silicon atoms, with entire degradation in hours, days, weeks, or months. Besides controllable degradation, investigations are also provided into the recycling of PU thermosets by means of thermal reprocessing based on carbamate bond exchange or repolymerization of degradation residuals. Because of the controllable degradation and easy recycling, this particular kind of PU thermoset exhibits great potential in manufacturing green polymer products that can be decomposed by nature or reutilized after disposal.
聚氨酯(PU)热固性塑料因其出色的机械、物理和化学性能以及良好的生物相容性,为我们的日常生活带来了诸多便利。然而,由于其在温和条件下主要抵抗化学降解,PU 废物日益引发环境和健康相关问题。在此,我们报道了一种主链中具有硅缩酮键的 PU 热固性塑料,使其能够在弱酸(甚至食用醋)的作用下发生聚合物降解。硅原子上的烷基取代基对降解速率有显著影响,降解时间可在数小时、数天、数周或数月之间调控。除了可控降解,我们还通过基于氨基甲酸酯键交换或降解残留物的重新聚合的热重新加工,研究了 PU 热固性塑料的回收。由于可控降解和易于回收,这种特殊的 PU 热固性塑料在制造可被自然分解或在处置后再利用的绿色聚合物产品方面具有巨大的潜力。