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Synthesis and Characterization of Salicylic Acid-Based Poly(Anhydride-Ester) Copolymers

机译:水杨酸基聚(酸酐-酯)共聚物的合成与表征

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摘要

A series of poly(anhydride-esters) based on poly(1,10-bis(o-car-boxyphenoxy)decanoate) (CPD) and poly(1,6-bis(p-carboxyphenoxy)hexane) (p-CPH) were synthesized by melt-condensation polymerization. Poly-(anhydride-esters) that contain CPD hydrolytically degraded into salicylic acid, however, these homopolymers have mechanical and thermal characteristics that limit their use in clinical applications. The synthesis and characterization of copolymers of CPD with p-CPH, a monomer known to generate mechanically stable homopolymers, was investigated. By changing the CPD to p-CPH monomer ratios, the salicylic acid loading and thermal/mechanical properties of the copolymers was a controlling factor; increasing the CPD concentration increased the salicylate loading but decreased the polymer stability; whereas increasing the p-CPH concentration increased the thermal and mechanical stability of the copolymers. Specifically, decreasing the CPD:p-CPH ratio resulted in lower salicylate loading and increased thermal decomposition temperatures. The glass transition temperatures (°C) varied from 27 to 38°C, a desirable range for elastomeric biomedical implants.
机译:基于聚(1,10-双(邻苯甲酰苯氧基)癸酸酯)(CPD)和聚(1,6-双(对羧基苯氧基)正己烷)(p-CPH)的一系列聚(酐-酯)通过熔融缩聚合成。但是,含有CPD的聚(酸酐酯)水解分解为水杨酸,但是这些均聚物的机械和热学特性限制了它们在临床应用中的使用。研究了CPD与p-CPH(已知可产生机械稳定的均聚物的单体)的共聚物的合成和表征。通过改变CPD与p-CPH单体的比例,共聚物的水杨酸负载量和热/机械性能成为控制因素。增加CPD浓度会增加水杨酸酯的含量,但会降低聚合物的稳定性;而增加p-CPH的浓度则增加了共聚物的热稳定性和机械稳定性。具体而言,降低CPD:p-CPH比值会导致水杨酸酯含量降低和热分解温度升高。玻璃化转变温度(℃)在27至38℃之间变化,这是弹性体生物医学植入物的理想范围。

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