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首页> 外文期刊>The journal of physics and chemistry of solids >Nanocomposites of poly(l-lactide) and surface modified magnesia nanoparticles: Fabrication, mechanical property and biodegradability
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Nanocomposites of poly(l-lactide) and surface modified magnesia nanoparticles: Fabrication, mechanical property and biodegradability

机译:聚(l-丙交酯)和表面改性的氧化镁纳米粒子的纳米复合材料:制备,力学性能和生物降解性

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摘要

A novel nanocomposite based on biodegradable poly(l-lactide) (PLLA) was prepared by the incorporation of surface modified magnesia (g-MgO) nanoparticles using a solution casting method. The mechanical properties, biodegradable properties and protein adhesion behavior of the g-MgO/PLLA nanocomposites were investigated. Scanning electron microscopy (SEM) results showed that g-MgO nanoparticles could comparatively uniformly disperse in PLLA matrix. The addition of g-MgO nanoparticles to PLLA matrix improved the tensile strength and elastic modulus, whereas reduced the elongation at break. The mass loss results showed that the nanocomposites with higher g-MgO content had faster degradation rates. The in vitro pH value determination results indicated that the g-MgO nanoparticles could neutralize effectively the lactic acid resulting from the degradation of PLLA. The g-MgO/PLLA nanocomposites exhibited enhanced protein adsorption, i.e., with the increase of g-MgO content, the amount of protein adsorption increased. The (5 wt%)g-MgO/PLLA nanocomposites adsorbed 33% more protein than the pure PLLA.
机译:通过使用溶液流延法掺入表面改性的氧化镁(g-MgO)纳米粒子,制备了一种基于可生物降解的聚(l-丙交酯)(PLLA)的新型纳米复合材料。研究了g-MgO / PLLA纳米复合材料的力学性能,生物降解性能和蛋白质粘附行为。扫描电子显微镜(SEM)结果表明,g-MgO纳米颗粒可以相对均匀地分散在PLLA基质中。向PLLA基质中添加g-MgO纳米颗粒可改善抗张强度和弹性模量,而降低断裂伸长率。质量损失结果表明,具有较高g-MgO含量的纳米复合材料具有更快的降解速率。体外pH值测定结果表明,g-MgO纳米颗粒可有效中和PLLA降解产生的乳酸。 g-MgO / PLLA纳米复合材料表现出增强的蛋白质吸附性,即随着g-MgO含量的增加,蛋白质吸附量增加。 (5 wt%)g-MgO / PLLA纳米复合材料比纯PLLA吸附的蛋白质多33%。

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