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首页> 外文期刊>CERAMICS INTERNATIONAL >Conversion of silicate glass to highly oriented divalent ion substituted hydroxyapatite nanorod arrays in alkaline phosphate solutions
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Conversion of silicate glass to highly oriented divalent ion substituted hydroxyapatite nanorod arrays in alkaline phosphate solutions

机译:将硅酸盐玻璃转化为碱性磷酸盐溶液中高度取向二价离子取代的羟基磷灰石纳米棒阵列

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This study presents a new strategy for preparing highly oriented nanorod array of divalent ion substituted hydroxyapatite (HAp) and factors controlling the rate of glass conversion. HAp nanorod arrays were prepared on a series of alkali/alkaline-earth silicate glasses in the Na2O-CaO-SrO-SiO2 system in phosphate aqueous solutions with different pH values via a glass conversion process. The effects of the substitution of Sr2+ for Ca2+ and the network connectivity (NC) of the silicate glasses on the degree of crystal orientation of the nanorod array of HAp crystals, the crystallite size, and the partial substitution of Sr2+ for Ca2+ in the HAp crystal lattice were investigated using X-ray diffraction, Si-29 magic angle spinning nuclear magnetic resonance (NMR) spectroscopy, and field-emission scanning electron microscopy. Sr-free Na2O-CaO-SiO2 glass was converted into HAp nanorod arrays highly-oriented toward the c-axis, whereas the increase in the NC of the glass led to a decrease in the rate of the conversion process from glass to HAp, which resulted in the reduction of the degree of c-axis orientation of the nanorod array of the HAp crystals. However, the rate of the conversion process was remarkably promoted in alkaline phosphate solutions, resulting in an increase of the degree of c-axis orientation of the nanorod array. The Sr/(Sr + Ca) molar fraction of silicate glasses determined the molar fraction of substituted Sr2+ in HAp crystal lattice.
机译:该研究提出了一种制备高度取向的纳米棒阵列的二价离子取代羟基磷灰石(HAP)的新策略和控制玻璃转化率的因素。在Na 2 -Ca-Sro-SiO2系统中在磷酸盐水溶液中的一系列碱/碱土硅酸盐玻璃上制备HAP NaNorod阵列,所述磷酸盐水溶液通过玻璃转化方法具有不同的pH值。 Sr2 +对Ca2 +的硅酸盐玻璃的纳米+和网络连接(Nc)的效果对Hap晶体,微晶尺寸和SR2 +中SR2 +部分取代的纳米棒阵列的晶体取向程度,在HAP晶体中使用X射线衍射,Si-29魔角纺丝核磁共振(NMR)光谱和现场排放扫描电子显微镜来研究晶格。将SR的Na2O-CaO-SiO2玻璃转化为高度取向的Hap纳米棒阵列,而玻璃Nc的增加导致从玻璃到Hap的转换过程的速率降低,导致HAP晶体的纳米棒阵列的C轴取向的程度降低。然而,在碱性磷酸盐溶液中显着促进了转化过程的速率,导致纳米峰阵列的C轴取向程度的增加。硅酸盐玻璃的SR /(SR + Ca)摩尔分数确定了HAP晶格中取代的SR2 +的摩尔级分。

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