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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Preparation and properties of biodegradable network poly(ester-carbonate) elastomers
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Preparation and properties of biodegradable network poly(ester-carbonate) elastomers

机译:可生物降解的网络型聚酯碳酸酯弹性体的制备及性能

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Biodegradable elastomeric network poly(ester-carbonate)s were prepared from multifunctional aliphatic carboxylic acids such as tricarballylic acid (Y-t) or trimesic acid (Y) and polycarbonate diols (PCD) with molecular weights of 1000 and 2000 g/mol. Prepolymers prepared by a melt polycondensation were cast from dimethylformamide solution and postpolymerized at 270 degrees C for 40-80 min to form a network. The resultant films were transparent, flexible and insoluble in organic solvents. WAXS exhibited the crystalline peaks due to polycarbonate segments for the network films from PCD2000, while those from PCD1000 were amorphous. The tensile properties were determined for these network films at the temperatures 22, 30, 40 and 50 degrees C. These films showed elastomeric properties at all temperatures measured. The elongation at break was much higher for the films from PCD2000 (208-434%) than those from PCD1000 (40-120%), and decreased with increasing temperatures. The weight losses of the network films degraded in the buffer solution of Rhizopus delemar lipase at 37 degrees C increased with time, suggesting that these network films are biodegradable. The degradation rate of the network films from Y, is faster than that from Y. The GPC curves showed that the lipase hydrolyzed both the ester linkages between Y or Y-t and PCD as well as polycarbonate moiety in the network polymer. (c) 2008 Published by Elsevier Ltd.
机译:可生物降解的弹性体网络型聚(碳酸酯-碳酸酯)是由多官能脂肪族羧酸(例如三碳烯酸(Y-t)或均苯三酸(Y))和分子量为1000和2000 g / mol的聚碳酸酯二醇(PCD)制备的。由二甲基甲酰胺溶液浇铸通过熔融缩聚制备的预聚物,并在270摄氏度下进行40-80分钟的后聚合,以形成网络。所得膜是透明的,柔性的并且不溶于有机溶剂。 WAXS的结晶峰是PCD2000网络膜的聚碳酸酯链段所致,而PCD1000是无定形的。在22、30、40和50℃的温度下测定这些网络膜的拉伸性能。这些膜在所有测得的温度下均显示出弹性性能。 PCD2000(208-434%)的薄膜的断裂伸长率要比PCD1000(40-120%)的薄膜高得多,并且随着温度的升高而降低。在37摄氏度下,在根瘤菌脂肪酶缓冲溶液中降解的网络薄膜的重量损失随时间增加,表明这些网络薄膜是可生物降解的。 Y对网络膜的降解速率比Y对网络膜的降解速率快。GPC曲线表明,脂肪酶水解Y或Y-t与PCD之间的酯键以及网络聚合物中的聚碳酸酯部分。 (c)2008年由Elsevier Ltd.发布。

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