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首页> 外文期刊>Journal of biomedical materials research, Part A >Morphology and properties of organic-inorganic hybrid materials involving TiO2 and poly(epsilon-caprolactone), a biodegradable aliphatic polyester.
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Morphology and properties of organic-inorganic hybrid materials involving TiO2 and poly(epsilon-caprolactone), a biodegradable aliphatic polyester.

机译:包含TiO2和可生物降解的脂族聚酯聚(ε-己内酯)的有机-无机杂化材料的形态和性能。

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The novel biodegradable poly(epsilon-caprolactone)/titanium dioxide hybrid materials were prepared via in situ sol-gel process of tetrabutyl titanate (TBT) as inorganic precursor in the presence of PCL. The relationships between morphology, microphase separation, crystalline structure, and properties were investigated by means of XPS, SEM, XRD, DSC, and in vitro degradation test. The microstructures of the bulk hybrids display two-phase microscopic separation on the nanometer scale, which domain is 20-80 nm. The surface morphology and intermolecular bonding interaction are significantly dependent on inorganic component. The relative crystalline degrees of PCL/TiO(2) hybrid nanocomposite materials were controlled by both inorganic component and hydrogen bonding special interaction. The hybrid nanocomposite materials with TiO(2) showed faster biodegradation rate than that of pure PCL itself, and the transparency corresponding to microstructure increase with increase of inorganic component content.
机译:在PCL存在下,通过钛酸四丁酯(TBT)作为无机前体的原位溶胶-凝胶法制备了新型的可生物降解的聚(ε-己内酯)/二氧化钛杂化材料。通过XPS,SEM,XRD,DSC和体外降解试验研究了形态,微相分离,晶体结构和性质之间的关系。本体杂化体的微观结构在纳米级显示出两相微观分离,其域为20-80nm。表面形态和分子间键相互作用主要取决于无机组分。 PCL / TiO(2)杂化纳米复合材料的相对结晶度受无机组分和氢键的特殊相互作用控制。与纯PCL本身相比,具有TiO(2)的杂化纳米复合材料显示出更快的生物降解速度,并且随着无机组分含量的增加,与微结构相对应的透明度也随之增加。

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