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首页> 外文期刊>Key Engineering Materials >Mechanism of Apatite Formation on Sol-Gel Derived PDMS-Modified SiO_2-CaO-P_2O_5 Hybrids with Various P_2O_5 Content
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Mechanism of Apatite Formation on Sol-Gel Derived PDMS-Modified SiO_2-CaO-P_2O_5 Hybrids with Various P_2O_5 Content

机译:溶胶-凝胶衍生的PDMS修饰的具有不同P_2O_5含量的SiO_2-CaO-P_2O_5杂化物的磷灰石形成机理

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摘要

The mechanism of apatite formation on the surface of novel PDMS modified SiO_2-CaO- P_2O_5 hybrids is presented. The bioactive hybrids with different P_2O_5 content were synthesized by sol-gel method and soaked in the simulated body fluid (SBF) for different periods. The surface and the cross-section of the specimens were examined by use of Fourier transform infrared reflection spectroscopy, thin-film X-ray diffraction technique and scanning electron microscopy. The PDMS-SiO_2-CaO-P_2O_5 hybrid containing 0.03 mole ratio of TEP(triethyl phosphate) / TEOS (tetraethoxysilane) exhibited faster apatite formation compared to P_2O_5-free hybrids. This composition resulted in the thickest apatite layer (~6μm) and this might be attributed to faster formation of the silica hydrogel on the surface of the P_2O_5-containing hybrids than on the surface of the P_2O_5-free hybrids. Resultingly, the apatite nucleation on the surface of the P_2O_5-containing hybrids is effectively induced by the hydrated silica at a lower degree of supersaturation. Changes in concentrations of the calcium, silicon and phosphorus in the SBF and the SEM-EDS line analysis depicting the variation of Si, Ca and P elements for the bulk, the interface and the apatite are reported. These were found to be quite correlative with each other. The rate of the concentration changes for the P_2O_5-containing hybrids is higher than that of the P_2O_5-free hybrids. The increases in the calcium and silicon concentrations are attributed to dissolution of the calcium and silicate ions from the hybrids, and the decrease in the phosphorus concentration is ascribed to formation of the amorphous calcium phosphate and crystalline apatite on the surface of hybrids by consuming the phosphate ion from the fluid.
机译:提出了新型PDMS改性SiO_2-CaO-P_2O_5杂化物表面磷灰石形成的机理。通过溶胶-凝胶法合成了具有不同P_2O_5含量的生物活性杂种,并在模拟体液中浸泡了不同的时间。通过使用傅立叶变换红外反射光谱,薄膜X射线衍射技术和扫描电子显微镜检查样品的表面和横截面。与不含P_2O_5的杂化物相比,包含0.03摩尔比的TEP(磷酸三乙酯)/ TEOS(四乙氧基硅烷)的PDMS-SiO_2-CaO-P_2O_5杂化物显示出更快的磷灰石形成。这种成分导致了最厚的磷灰石层(〜6μm),这可能是由于含P_2O_5的杂化物表面比无P_2O_5的杂化物表面更快形成了二氧化硅水凝胶。结果,水合二氧化硅以较低的过饱和度有效地诱导了含P_2O-5的杂化物表面上的磷灰石成核。报告了SBF中钙,硅和磷的浓度变化以及SEM-EDS线分析,该曲线描述了硅,钙和磷元素在块体,界面和磷灰石中的变化。发现它们彼此之间非常相关。含P_2O_5的杂种的浓度变化率高于不含P_2O_5的杂种的浓度变化率。钙和硅浓度的增加归因于杂化物中钙和硅酸根离子的溶解,磷浓度的降低归因于通过消耗磷酸盐而在杂化物表面形成无定形磷酸钙和结晶磷灰石。流体中的离子。

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