首页> 外文期刊>Journal of biomaterials applications >Fabrication of Poly-(DL-Lactic Acid)--Wollastonite Composite Films with Surface Modified {beta}-CaSiO3 Particles.
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Fabrication of Poly-(DL-Lactic Acid)--Wollastonite Composite Films with Surface Modified {beta}-CaSiO3 Particles.

机译:具有表面改性的β-CaSiO3颗粒的聚(DL-乳酸)-硅灰石复合薄膜的制备。

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摘要

Bioactive poly-(DL-lactic acid) (PDLLA)-wollastonite composite films are successfully fabricated using surface modified wollastonite (m beta-CaSiO 3) particles through solvent casting-evaporation method. The surface modification of beta-CaSiO3 particles are conducted by reaction of the ceramic particles with dodecyl alcohol. Surface morphology, tensile strength, and bioactivity of the composite films are investigated. The results show that the particle distribution and tensile strength of the composite films with modified beta-CaSiO3 particles are significantly improved while the bioactivity is retained. As a result, the maximum tensile strength is enhanced 52.2% when compared with the PDLLA-beta-CaSiO3 composite films prepared using unmodified beta-CaSiO3 particles when the inorganic filler content is 15 wt%. Scanning electron microscopy (SEM) observation suggests that the modified m beta-CaSiO3 particles are homogeneously dispersed in the PDLLA matrix. The bioactivity of the composite films is evaluated by soaking in a simulated body fluid (SBF) and the result suggests that the modified composite film is still bioactive and can induce the formation of HAp on its surface after the immersion in SBF, despite the bonded dodecyl alkyl on the surface of the inorganic particles. All these results imply that the surface modification of beta-CaSiO3 with dodecyl alcohol is an effective approach to prepare PDLLA-beta-CaSiO3 composite with improved properties.
机译:利用表面改性的硅灰石(mβ-CaSiO3)颗粒,通过溶剂流延-蒸发法成功地制备了生物活性聚-(DL-乳酸)(PDLLA)-硅灰石复合膜。 β-CaSiO3颗粒的表面改性是通过陶瓷颗粒与十二烷醇的反应进行的。研究了复合膜的表面形态,拉伸强度和生物活性。结果表明,改性的β-CaSiO3颗粒复合膜的颗粒分布和拉伸强度得到了显着改善,同时保留了生物活性。结果,当无机填料含量为15重量%时,与使用未改性的β-CaSiO3颗粒制备的PDLLA-β-CaSiO3复合膜相比,最大拉伸强度提高了52.2%。扫描电子显微镜(SEM)观察表明,改性的β-CaSiO3颗粒均匀分散在PDLLA基质中。通过浸入模拟体液(SBF)中来评估复合膜的生物活性,结果表明,尽管十二烷基键合,但改性复合膜仍具有生物活性,并且在浸入SBF后仍可在其表面上诱导HAp的形成。无机颗粒表面上的烷基。所有这些结果表明,用十二烷醇对β-CaSiO3进行表面改性是制备性能改善的PDLLA-β-CaSiO3复合材料的有效方法。

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