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Polydimethylsiloxane/Calcium Phosphates Composites: Effect of the Fillers Modification on the Cross-Linking and Surface Energy

机译:聚二甲基硅氧烷/磷酸钙复合材料:填料改性对交联和表面能的影响

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A potential approach to achieving the objective ot favorably modulating me biological response of implantable biopolymers combined with good mechanical properties is to consider compounding the biopolymer with a bioactive nanocrystalline ceramic biomimetic material with high surface area. In this work, n-HAp (nano-hydroxyapatite) and n-α-TCP (nano-a-tricalcium phosphate) powders were modified by silane coupling agent and mixed with poly(dimethyl siloxane) gum so nano-composites could be achieved. The influence of the introduction of modified and unmodified calcium phosphate particles on the composite thermodynamics parameters of cross-linking, static contact angle and surface energy were investigated. It was found that the dispersion state of modified particles in the silicone matrix was homogeneous. The introduction of fillers into the silicone matrix changed the enthalpy of cross-linking. The addition of unmodified particles led to higher surface energy values, on the other hand, modified particles led to lower surface energy values.
机译:达到有利地调节可植入生物聚合物的生物学响应并结合良好机械性能的目标的潜在方法是考虑将生物聚合物与具有高表面积的生物活性纳米晶体陶瓷仿生材料复合。在这项工作中,n-HAp(纳米羟基磷灰石)和n-α-TCP(纳米α-磷酸三钙)粉末通过硅烷偶联剂改性,并与聚(二甲基硅氧烷)胶混合,因此可以实现纳米复合材料。研究了改性和未改性磷酸钙颗粒的引入对交联,静态接触角和表面能的复合热力学参数的影响。发现改性颗粒在硅氧烷基质中的分散状态是均匀的。将填料引入有机硅基质中改变了交联的焓。未改性颗粒的加入导致较高的表面能值,另一方面,改性颗粒导致较低的表面能值。

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