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Doubly degradable dynamers: dynamic covalent polymers based on reversible imine connections and biodegradable polyester units

机译:可双重降解的染料:基于可逆亚胺连接和可生物降解的聚酯单元的动态共价聚合物

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摘要

We report the preparation and features of environmentally friendly "Green Dynamers" (GDs), dynamic polymers presenting sequential double-degradation features, chemical and biological. They were obtained by connecting biodegradable oligomers (such as small units of polybutylene adipate, PBA, and polybutylene succinate, PBS) through chemically degradable reversible imine bonds. The GDs possess water disintegratability, mendability and biodegradability. Their degradation rate may be modulated through and increases with the number of imine groups in the polymeric chain. The GDs were thermodynamically stable and maintained their molecular weight and their mechanical strength in air. However, when they were contacted with water, the imine bonds easily hydrolyzed, breaking up the polymer chains into oligomers. After such water disintegration, the residual oligomers were biodegraded into CO2 and water. In addition, the imine bonds were restored by evaporation of the water, leading to recovery of the molecular weight and of the mechanical properties of the GDs. The present GDs may be considered to represent a class of doubly-degradable polymers, combining chemical and biological degradability features, that operate in mild environmental conditions. This concept may contribute to solve the problem of waste elimination associated with the use of non-degradable polymeric materials.
机译:我们报告了环保型“绿色染料”(GDs),呈现出连续双降解特征的动态聚合物,化学和生物学的制备和特征。它们是通过可化学降解的可逆亚胺键连接可生物降解的低聚物(例如小分子的聚己二酸丁二酯PBA和聚丁二酸丁二酯PBS)而获得的。 GD具有水崩解性,修复性和生物降解性。它们的降解速率可通过聚合物链中亚胺基的数量来调节,并随其增加而增加。 GD是热力学稳定的,并在空气中保持其分子量和机械强度。但是,当它们与水接触时,亚胺键容易水解,从而使聚合物链断裂为低聚物。在这种水分解之后,残余的低聚物被生物降解为CO 2和水。另外,通过蒸发水来恢复亚胺键,从而导致GD的分子量和机械性能恢复。本发明的GD可被认为是代表一类可双重降解的聚合物,结合了化学和生物降解特性,可在温和的环境条件下运行。该概念可以有助于解决与使用不可降解的聚合物材料相关的废物消除问题。

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