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Preparation of diopside by novel sol-gel method using rice husk ash as silica source

机译:以稻壳灰为二氧化硅源的新型溶胶-凝胶法制备透辉石

摘要

Diopside (CaMgSi2O6) was synthesised through a novel sol-gel synthesis. Sol-gel synthesis usually utilises silicon alkoxides (e.g TEOS) for the synthesis of Diopside. The material is costly and unstable in the air atmosphere. In the present investigation, rice husk ash (RHS) has been used for an alternative to TEOS raw material. RHS is cheap and contains amorphous silica which can be dissolved in the solution. RHS was dissolved in citric acid and metal nitrate solution. The gelling was performed. The gel was characterised for TG-DSC analysis. The phase formation behaviour with the application of heat on the gel was studied by calcining it at different temperatures upto 1050oC. XRD phase analysis showed the formation of diopside phase in the calcined product. The material was sintered at 1100oC and tested for bio-activity by incubating in SBF solution. The material induces apatite formation in its surface within 14 days of incubation. In conclusion, the Diopside bioactive material synthesised through this novel sol-gel processing, may be a cost effective material for bulk applications.
机译:通过新颖的溶胶-凝胶合成法合成了透辉石(CaMgSi2O6)。溶胶-凝胶合成通常利用烷氧基硅(例如TEOS)来合成透辉石。该材料昂贵且在大气中不稳定。在本研究中,稻壳灰(RHS)已被用作TEOS原料的替代品。 RHS价格便宜,并且包含可以溶解在溶液中的无定形二氧化硅。将RHS溶解在柠檬酸和金属硝酸盐溶液中。进行胶凝。将该凝胶表征用于TG-DSC分析。通过在高达1050oC的不同温度下煅烧,研究了在凝胶上加热时的相形成行为。 XRD相分析显示煅烧产物中透辉石相的形成。将该材料在1100°C下烧结,并通过在SBF溶液中孵育来测试其生物活性。该物质在孵育后14天之内诱导其表面形成磷灰石。总之,通过这种新颖的溶胶-凝胶工艺合成的透辉石生物活性材料可能是用于批量应用的经济有效的材料。

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    Nagar Rahul;

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  • 年度 2011
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