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SILICON-SUBSTITUTED HYDROXYAPATITE SYNTHESIZED BY A HYDROTHERMAL METHOD

机译:水热法合成硅取代羟基磷灰石

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Silicon-substituted hydroxyapatite (Si-HA) bioceramics are widely used as bone replacement materials. The incorporation of silicone into hydroxyapatite (HA) has been shown to increase the rate of bone apposition into HA bioceramics implants significantly. Si, an essential trace element required for healthy bone and connective tissues, influences the biological activity of CaP (calcium phosphate) materials by modifying material properties and it has direct effects on the physiological processes in skeletal tissue. Silicon has been substituted in the HA lattice by replacing some of the phosphate (PO_4) groups by silicate (SiO_4) groups resulting in silicate substituted HA described as Ca_(10)(PO_4)_(6-x)(SiO_4)_x(OH)_(2-x). Si-HA was prepared successfully by hydrothermal method, using Ca(NO_3)_2, (NH_4)_3PO_4 and Si(OCH_2CH_3)_4 TEOS as starting materials. The analysis of samples by ICP, XRD, FTIR and SEM showed that the substitution of phosphate groups by silicate groups causes some OH~- loss to maintain the charge balance and changes of the lattice parameters were observed. Furthermore the substitution of the silicate groups reduces the size of Si-HA crystallites.
机译:硅取代的羟基磷灰石(Si-HA)生物陶瓷被广泛用作骨替代材料。已经显示,将硅酮掺入羟基磷灰石(HA)可以显着提高HA生物陶瓷植入物的骨附着率。硅是健康的骨骼和结缔组织所需的必需微量元素,它通过改变材料特性来影响CaP(磷酸钙)材料的生物活性,并且对骨骼组织的生理过程有直接影响。通过用硅酸盐(SiO_4)取代某些磷酸酯(PO_4)基团,硅已被取代在HA晶格中,从而导致硅酸盐取代的HA被描述为Ca_(10)(PO_4)_(6-x)(SiO_4)_x(OH) )_(2-x)。以Ca(NO_3)_2,(NH_4)_3PO_4和Si(OCH_2CH_3)_4 TEOS为起始原料,通过水热法成功制备了Si-HA。通过ICP,XRD,FTIR和SEM对样品进行分析,结果表明,磷酸酯基被硅酸酯基团取代会引起一些OH-损失,从而维持电荷平衡,并观察到晶格参数的变化。此外,硅酸酯基团的取代减小了Si-HA微晶的尺寸。

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