首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Blending polysaccharides with biodegradable polymers. I. Properties of chitosan/polycaprolactone blends.
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Blending polysaccharides with biodegradable polymers. I. Properties of chitosan/polycaprolactone blends.

机译:将多糖与可生物降解的聚合物混合。 I.壳聚糖/聚己内酯共混物的性质。

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摘要

Blends of polycaprolactone (PCL) and chitosan (CHT) were prepared by casting from a solution. CHT and PCL were dissolved by using acetic acid/water mixtures. Both solutions were slowly mixed to cast blend films containing 10%, 20%, 30%, and 40% by weight of CHT. PCL and CHT form phase separated blends. The phase morphology is in large extent controlled by the casting procedure. Even if casting of the film starts from a clear solution, the solvent composition determines the form in which phase separation takes place and consequently the morphology of the resulting blend after solvent evaporation. The blend containing 20% CHT presents cocontinuous phases. The sample presents a high elastic modulus even at temperatures above melting of PCL. Blends with higher CHT contents consist of disperse PCL domains in a CHT matrix and the contrary occurs in the blend containing 10% CHT in which disperse CHT domains with a network morphology appear inside the spherulites of PCL. In all the blends, the nucleation effect of CHT accelerates the crystallization of PCL from the melt, although in the blends with high CHT contents a part of the PCL mass included in large domains might not be affected by the presence of CHT. The sample containing 20% CHT has a peculiar behavior with respect to the crystallization of PCL, only a small part of PCL crystallizes in isothermal treatments although this fraction crystallizes faster than in the rest of the blends.
机译:聚己内酯(PCL)和壳聚糖(CHT)的混合物是通过从溶液中流延制备的。通过使用乙酸/水混合物溶解CHT和PCL。将两种溶液缓慢混合以形成包含10重量%,20重量%,30重量%和40重量%的CHT的流延共混膜。 PCL和CHT形成相分离的混合物。相形貌在很大程度上由铸造程序控制。即使薄膜的浇铸从透明溶液开始,溶剂组成也会决定发生相分离的形式,并因此决定溶剂蒸发后所得共混物的形态。包含20%CHT的共混物呈现连续相。即使在高于PCL熔融温度的情况下,样品仍具有高弹性模量。 CHT含量较高的掺合物由CHT基质中的分散PCL域组成,而在含10%CHT的掺合物中则相反,其中具有网络形态的分散CHT域出现在PCL球晶中。在所有的共混物中,CHT的成核作用促进了熔体中PCL的结晶,尽管在高CHT含量的共混物中,大区域中包含的一部分PCL质量可能不受CHT的存在的影响。相对于PCL的结晶,含20%CHT的样品具有特殊的行为,在等温处理中只有一小部分PCL结晶,尽管该部分的结晶速度比其余共混物中的要快。

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