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A Novel Preparation Method for Nano-HA/PLA Composite with Grafted PLA

机译:接枝PLA纳米HA / PLA复合材料的制备方法

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摘要

Good interfacial interaction is crucial for preparation of inorganic-organic materials at a nanometer level. Poly(α-methacrylic acid) (PMAA) was grafted on the PLA surfaces via photooxidization and subsequent UV induced polymerization in an attempt to synthesize nano-hydroxyapatite/poly(lactide) (n-HA/PLA) composites. Grafting of PMAA on the PLA surface was confirmed using FTIR analysis and the size distribution measurement of the grafted-PLA (g-PLA) particles. n-HA/g-PLA composites were in situ synthesized via dropwise addition of Ca~(2+)-and g-PLA containing solution to PO_4~(3-)- solution. The prepared composites were characterized by FTIR, XRD, SEM and TEM means. Analytical results indicated that the g-PLA acts as a template to manipulate the nucleation and growth of n-HA crystals and thereby to control the morphology, size and anisotropy of n-HA crystals and their distribution over the organic phase. Chemical linkages and/or interfacial interactions between the n-HA and the g-PLA in the n-HA/g-PLA composite were further discussed.
机译:良好的界面相互作用对于纳米级无机有机材料的制备至关重要。聚(α-甲基丙烯酸)(PMAA)通过光氧化和随后的紫外线诱导的聚合反应嫁接到PLA表面,以尝试合成纳米羟基磷灰石/聚丙交酯(n-HA / PLA)复合材料。使用FTIR分析和接枝的PLA(g-PLA)颗粒的尺寸分布测量结果证实了PMAA在PLA表面的接枝。通过将含Ca〜(2+)和g-PLA的溶液滴加到PO_4〜(3-)-溶液中原位合成n-HA / g-PLA复合材料。通过FTIR,XRD,SEM和TEM手段对制备的复合材料进行了表征。分析结果表明,g-PLA作为模板来操纵n-HA晶体的成核和生长,从而控制n-HA晶体的形态,大小和各向异性以及它们在有机相中的分布。进一步讨论了n-HA / g-PLA复合材料中n-HA与g-PLA之间的化学键和/或界面相互作用。

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