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Photoinduced Degradation of Polymer Films Using Polyglyoxylate–PolyesterBlends and Copolymers

机译:聚乙醛酸酯-聚酯对聚合物薄膜的光诱导降解共混物和共聚物

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摘要

Polymeric coatings are commonly employed to alter surface properties. While some coatings are designed to remain stable over a prolonged period, in applications such as pharmaceuticals or fertilizers, the coating is designed to erode and reveal or release the underlying material. Self-immolative polymers (SIPs) undergo depolymerization following the cleavage of stimuli-responsive end-caps from their termini, enabling controlled depolymerization in the solid state and in solution. Poly(ethyl glyoxylate) (PEtG) is a promising SIP because of its depolymerization to benign products, but its amorphous structure and low glass-transition temperature make it unsuitable alone for coating applications. This study explored the blending of PEtG with polyesters including polycaprolactone (PCL), poly(l-lactic acid), and poly(R-3-hydroxybutyrate). Block copolymers of PEtG with PCL were also synthesized and studied. It was found that the phase separation behavior and consequently the thermal and mechanical properties of the materials could be tuned according to the composition of the blend, while the stimuli-responsivedegradation of PEtG was retained in the blends. This work thereforeprovides a framework for the application of PEtG-based coatings inapplications ranging from pharmaceuticals to agricultural products.
机译:聚合物涂层通常用于改变表面性能。尽管某些涂料被设计成可以长时间保持稳定,但是在诸如药物或肥料等应用中,该涂料被设计成可以腐蚀并露出或释放下面的物质。自消极聚合物(SIP)在刺激反应性末端基团从其末端裂解后进行解聚,从而实现了固态和溶液中受控的解聚。聚乙醛酸乙酯(PEtG)由于其解聚成良性产品而成为很有前途的SIP,但其无定形结构和低玻璃化转变温度使其不适用于涂料应用。这项研究探索了PEtG与包括聚己内酯(PCL),聚(1-乳酸)和聚(R-3-羟基丁酸酯)在内的聚酯的共混物。还合成并研究了PEtG与PCL的嵌段共聚物。已经发现,可以根据共混物的组成来调节材料的相分离行为以及相应的热力学性能,而刺激响应PEtG的降解保留在共混物中。因此这项工作提供了基于PEtG的涂料应用的框架应用范围从药品到农产品。

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