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首页> 外文期刊>Philosophical transactions of the Royal Society. Mathematical, physical, and engineering sciences >Local structures of mesoporous bioactive glasses and their surface alterations in vitro: Inferences from solid-state nuclear magnetic resonance (Review)
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Local structures of mesoporous bioactive glasses and their surface alterations in vitro: Inferences from solid-state nuclear magnetic resonance (Review)

机译:介孔生物活性玻璃的局部结构及其体外表面变化:来自固态核磁共振的推论(综述)

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摘要

We review the benefits of using~(29)Si and ~1H magic angle spinning (MAS) nuclear magnetic resonance (NMR) spectroscopy for probing the local structures of both bulk and surface portions of mesoporous bioactive glasses (MBGs) of the CaO-SiO_2-(P_2O_5) system. These mesoporous materials exhibit an ordered pore arrangement, and are promising candidates for improved bone and tooth implants. We discuss experimental MAS NMR results from three MBGs displaying different Ca, Si and P contents: the ~(29)Si NMR spectra were recorded either directly by employing radio-frequency pulses to ~(29)Si, or by magnetization transfers from neighbouring protons using cross polarization, thereby providing quantitative information about the silicate speciation present in the pore wall and at the MBG surface, respectively. The surface modifications were monitored for the three MBGs during their immersion in a simulated body fluid (SBF) for intervals between 30 min and one week. The results were formulated as a reaction sequence describing the interconversions between the distinct silicate species. We generally observed a depletion of Ca~(2+) ions at the MBG surface, and a minor condensation of the silicate-surface network over one week of SBF soaking.
机译:我们回顾了使用〜(29)Si和〜1H幻角旋转(MAS)核磁共振(NMR)光谱探测CaO-SiO_2介孔生物活性玻璃(MBG)的主体和表面部分的局部结构的好处-(P_2O_5)系统。这些中孔材料表现出有序的孔排列,并且是改进骨和牙植入物的有希望的候选者。我们讨论了来自三个具有不同Ca,Si和P含量的MBG的MAS NMR实验结果:〜(29)Si NMR光谱通过使用射频脉冲直接〜(29)Si或通过相邻质子的磁化转移直接记录使用交叉极化,从而提供有关孔壁和MBG表面分别存在的硅酸盐形态的定量信息。在三个MBG浸入模拟体液(SBF)的过程中,对表面改性进行了30分钟至1周的监控。将结果表示为反应序列,描述了不同硅酸盐种类之间的相互转化。我们通常观察到MBG表面Ca〜(2+)离子的消耗,以及SBF浸泡一周后硅酸盐表面网络的少量凝结。

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