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Optical and spectroscopic study as a tool to probe the role of modifier oxides on bioactive behavior of zirconia added sodium boro silicate glass system

机译:光谱和光谱研究作为探讨改性剂氧化物在氧化锆的生物活性行为的工具的工具,加入硼硼硅酸钠玻璃系统

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摘要

A novel bioactive glass of the composition B2O3-SiO2-Na2O-ZrO2: MO is synthesized through conventional melt quenching technique. Role of some modifier oxides (Li2O, MgO, ZnO, and CaO) on bioactive behaviour through optical and spectroscopic properties of these samples is investigated after immersing in simulated body fluid (SBF) for about a month. XRD pattern and SEM pictures of the post-immersed sample in SBF solution suggested the deposition of HAp layer on surface of the samples. pH of the test solution is enhanced in the course of immersion and showed a linear increase at the initial stage and attained saturation after a period of about 10 days. The comparison of pH of the remnant solution of the glasses mixed with different modifier oxides indicated the maximal value for Li2O mixed glasses. The IR spectra of post immersed samples exhibited vibrational bands related to carbonated hydroxy-apatite groups. The optical band gap estimated from the optical absorption spectra indicated considerable increase due to immersion in SBF and it is attributed to the deposition of HAp layer on the glass surface. Overall analysis of the results indicated Li2O mixed glasses are more efficient bioactive glasses when compared with the glasses mixed with other modifier oxides.
机译:通过常规熔体猝灭技术合成组合物B2O3-SiO 2-Na 2 O-ZrO2:Mo的新型生物活性玻璃。在将模拟体液(SBF)浸入大约一个月后,研究了一些改性剂氧化物(Li2O,MgO,ZnO和CaO)通过光学和光谱性能的生物活性行为的作用。 SBF溶液中浸入式样品的XRD图案和SEM图片表明HAP层在样品表面上沉积。在浸渍过程中,在浸渍过程中提高了测试溶液的pH,并且在初始阶段显示线性升高并在约10天后获得饱和度。与不同改性氧化物混合的玻璃的残余溶液的pH的比较表明Li2O混合玻璃的最大值。后浸渍样品的IR光谱表现出与碳酸羟基磷灰石基团相关的振动带。由于浸入SBF沉浸,从光学吸收光谱估计的光带隙表明,由于SBF浸入,并且归因于玻璃表面上的HAP层的沉积。与其他改性剂氧化物混合的玻璃相比,对结果的总体分析表明Li2O混合玻璃更有效的生物活性眼镜。

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