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Microstructure and Bio-mineralization Behavior of the Sol-Gel Derived Bioactive Materials

机译:溶胶-凝胶衍生的生物活性材料的微观结构和生物矿化行为

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摘要

The biomaterials in system CaO-P_2O_5-SiO_2 were synthesized via sol-gel method. The biomaterials can be applied to bone reparation and bone tissue engineering scaffolds The nano-pore structure, degradability, bioactivity and bio-mineralization characteristic of the biomaterials were investigated in details using XRD, SEM/EDX, FTIR, BET and DSC/TG techniques. It was indicated that the sol-gel derived biomaterials have a higher bioactivity than that of the melt derived bioactive glasses or glass-ceramics. It just takes 4-8 hours for HCA to form on the surface of the sol-gel samples in SBF solution at 37℃. The spherical HCA crystal clusters formed on the surface of the sol-gel derived samples immersed in SBF for 8 hours have a low crystallinity. Owing to their interconnected nano-sized pores, the sol-gel samples possess much higher surface areas and the hydrous porous SiO_2 gel layer containing a great amount of ≡Si-OH groups can be rapidly formed on the biomterials' surface through a quick ion exchange between H_3O~+ in the solution and Ca~(2+) in the surface of the materials. ≡Si-OH groups can play a very important role in inducing formation of HCA. They make the material surfaces electronegative, which resulted in a double electrode layer formed between the samples surface and SBF solution. The double electrode layer is in favor of formation of HCA on the surface of the materials.
机译:通过溶胶-凝胶法合成了CaO-P_2O_5-SiO_2体系中的生物材料。该生物材料可应用于骨修复和骨组织工程支架。使用XRD,SEM / EDX,FTIR,BET和DSC / TG技术详细研究了该生物材料的纳米孔结构,降解性,生物活性和生物矿化特性。已经表明,溶胶-凝胶衍生的生物材料具有比熔融衍生的生物活性玻璃或玻璃-陶瓷更高的生物活性。在37℃的SBF溶液中,溶胶-凝胶样品的表面仅需要4-8小时即可形成HCA。浸泡在SBF中8小时的溶胶-凝胶衍生样品的表面上形成的球形HCA晶体簇具有较低的结晶度。由于其相互连接的纳米孔,溶胶-凝胶样品具有更高的表面积,并且可以通过快速离子交换在生物材料的表面上迅速形成包含大量≡Si-OH基团的含水多孔SiO_2凝胶层。溶液中的H_3O〜+和材料表面的Ca〜(2+)之间。 ≡Si-OH基团在诱导HCA形成中起非常重要的作用。它们使材料表面带负电,从而在样品表面和SBF溶液之间形成双电极层。双电极层有利于在材料表面上形成HCA。

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