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首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Synthesis and Characterization of Photocrosslinked Poly(epsilon-caprolactone)s Showing Shape-Memory Properties
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Synthesis and Characterization of Photocrosslinked Poly(epsilon-caprolactone)s Showing Shape-Memory Properties

机译:具有形状记忆特性的光交联聚(ε-己内酯)s的合成与表征

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Poly(epsilon-caprolactone) (PCL) with a pendent coumarin group was prepared by solution polycondensation from 7-(3,5-dicarboxyphenyl) carbonylmethoxycoumarin dichloride and alpha, omega-dihydroxy terminated poly(epsilon-caprolactone) with molecular weights of 1250, 3000, and 10,000 g/mol. These photosensitive polymers underwent a rapid reversible photocrosslinking upon exposure to irradiation with alternating wavelengths (>280/254 nm) without a photoinitiator. The thermal and mechanical properties of the photocrosslinked films were examined by means of differential scanning calorimetry and stress-strain measurements. The crosslinked films exhibited elastic properties above the melting temperature of the PCL segment along with significant decrease in the ultimate tensile strength and Young's modulus. Shape-memory properties such as strain fixity ratio (R-f) and strain recovery ratio (R-r) were determined by means of a cyclic thermomechanical tensile experiments under varying maximum strains (epsilon(m) = 100, 300, and 500%). The crosslinked ICM/PCL-3000 and -10,000 films exhibited the excellent shape-memory properties in which both R-f and R-r values were 88-100% for tensile strain of 100-500%; after the deformation, the films recovered their permanent shapes instantaneously. In vitro degradation was performed in a phosphate buffer saline (pH 7.2) at 37 degrees C with or without the presence of Pseudomonas cepacia lipase. The presence of the pendent coumarin group and the crosslinking of the polymers pronouncedly decreased the degradation rate. The crosslinked biodegradable PCL showing a good shape-memory property is promising as a new material for biomedical applications.
机译:通过从7-(3,5-二羧基苯基)羰基甲氧基香豆素二氯化物与α,ω-二羟基封端的聚(ε-己内酯)溶液缩聚制备具有悬垂香豆素基团的聚(ε-己内酯)(PCL), 3000和10,000 g / mol。在没有光引发剂的情况下,这些光敏聚合物在暴露于交替波长(> 280/254 nm)的辐射下进行了快速可逆的光交联。通过差示扫描量热法和应力应变测量法检查了光交联膜的热和机械性能。所述交联的膜在高于PCL链段的熔融温度时表现出弹性,同时极限拉伸强度和杨氏模量显着降低。通过循环热机械拉伸实验,在变化的最大应变(ε(m)= 100、300和500%)下,确定了形状记忆特性,例如应变固定率(R-f)和应变恢复率(R-r)。交联的ICM / PCL-3000和-10,000薄膜具有出色的形状记忆特性,其中对于100-500%的拉伸应变,R-f和R-r值均为88-100%。变形后,薄膜立即恢复其永久形状。在存在或不存在洋葱假单胞菌脂肪酶的情况下,在磷酸盐缓冲液(pH 7.2)中于37摄氏度进行体外降解。侧基香豆素基团的存在和聚合物的交联明显降低了降解速率。具有良好的形状记忆性能的可交联的可生物降解的PCL有望作为生物医学应用的新材料。

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