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使用同位素取代中子衍射对掺钛生物玻璃进行结构表征。

Structural characterization of titanium-doped Bioglass using isotopic substitution neutron diffraction.

机构信息

School of Physical Sciences, Ingram Building, University of Kent, Canterbury, CT2 7NH, UK.

出版信息

Phys Chem Chem Phys. 2012 Dec 5;14(45):15807-15. doi: 10.1039/c2cp43032k. Epub 2012 Oct 19.

Abstract

Melt quenched silicate glasses containing calcium, phosphorus and alkali metals have the ability to promote bone regeneration and to fuse to living bone. Of these glasses 45S5 Bioglass® is the most widely used being sold in over 35 countries as a bone graft product for medical and dental applications; particulate 45S5 is also incorporated into toothpastes to help remineralize the surface of teeth. Recently it has been suggested that adding titanium dioxide can increase the bioactivity of these materials. This work investigates the structural consequences of incorporating 4 mol% TiO(2) into Bioglass® using isotopic substitution (of the Ti) applied to neutron diffraction and X-ray Absorption Near Edge Structure (XANES). We present the first isotopic substitution data applied to melt quench derived Bioglass or its derivatives. Results show that titanium is on average surrounded by 5.2(1) nearest neighbor oxygen atoms. This implies an upper limit of 40% four-fold coordinated titanium and shows that the network connectivity is reduced from 2.11 to 1.97 for small quantities of titanium. Titanium XANES micro-fluorescence confirms the titanium environment is homogenous on the micron length scale within these glasses. Solid state magic angle spinning (MAS) NMR confirms the network connectivity model proposed. Furthermore, the results show the intermediate range order containing Na-O, Ca-O, O-P-O and O-Si-O correlations are unaffected by the addition of small quantities of TiO(2) into these systems.

摘要

含有钙、磷和碱金属的熔融淬火硅酸盐玻璃具有促进骨再生和与活骨融合的能力。在这些玻璃中,45S5 Bioglass®应用最为广泛,作为一种医用和牙科用的骨移植物产品在 35 个国家销售;颗粒状 45S5 也被纳入牙膏中,以帮助牙齿表面再矿化。最近有人提出,添加二氧化钛可以提高这些材料的生物活性。这项工作通过(钛的)同位素取代,使用中子衍射和 X 射线吸收近边结构(XANES)研究了将 4mol%TiO2 掺入 Bioglass®中所产生的结构后果。我们提出了首次应用于熔融淬火衍生的 Bioglass 或其衍生物的同位素取代数据。结果表明,钛的平均被 5.2(1)个最近邻氧原子包围。这意味着四配位钛的上限为 40%,并且表明在少量钛的情况下,网络连接性从 2.11 降低到 1.97。钛 XANES 微荧光证实了在这些玻璃中,钛环境在微米长度尺度上是均匀的。固态魔角旋转(MAS)NMR 证实了所提出的网络连接模型。此外,结果表明,含有 Na-O、Ca-O、O-P-O 和 O-Si-O 相关的中间范围有序在这些体系中加入少量 TiO2 后不受影响。

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