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首页> 外文期刊>Journal of Applied Polymer Science >Current application of controlled degradation processes in polymer modification and functionalization
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Current application of controlled degradation processes in polymer modification and functionalization

机译:受控降解过程在聚合物改性和功能化中的当前应用

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摘要

Ecological concerns over the accumulation of polymeric waste material and the demand for functionalized polymers in specialty applications have promoted extensive research on different controlled degradation processes and their use. The production of functionalized or modified polymers by conventional synthetic routes is expensive and time consuming. However, advances in degradation technology have become an enabling factor in the production of modified polymers and their functionalization. Mild irradiation, ozonization, and enzymatic routes are among the processes that have been explored for polymer modification. Biopolymers, such as chitosan, hyaluronic acids, and polyhydroxyalkanoates, are known to be suitable for a diverse number of applications, ranging from biomedical to organic-electronics. At the same time, their high molecular weight, crystallinity, and shelf degradability limit their utility. Controlled degradation processes can be used to prepare these types of polymers with reasonably low molecular weights and to generate radical species that help to stabilize these polymers or to initiate further beneficial reactions. In this article, we review the application of controlled degradation processes for polymer modification and functionalization.
机译:对聚合物废料积累和特殊应用中对功能化聚合物的需求的生态关注促进了对不同受控降解过程及其用途的广泛研究。通过常规合成途径生产官能化或改性的聚合物是昂贵和费时的。但是,降解技术的进步已成为改性聚合物生产及其功能化的促成因素。温和的辐照,臭氧化和酶促途径是为聚合物改性而探索的过程。已知诸如壳聚糖,透明质酸和聚羟基链烷酸酯的生物聚合物适用于从生物医学到有机电子学的多种应用。同时,它们的高分子量,结晶度和货架降解性限制了它们的实用性。受控降解过程可用于制备分子量适当较低的这类聚合物,并生成有助于稳定这些聚合物或引发进一步有益反应的自由基。在本文中,我们回顾了受控降解过程在聚合物改性和功能化方面的应用。

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