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The structure of phosphate glass biomaterials from neutron diffraction and 31P nuclear magnetic resonance data

机译:从中子衍射和31P核磁共振数据看磷酸盐玻璃生物材料的结构

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摘要

Neutron diffraction and 31P nuclear magnetic resonance spectroscopy were used to probe the structure of phosphate glass biomaterials of general composition (CaO)0.5−x(Na2O)x(P2O5)0.5 (x = 0, 0.1 and 0.5). The results suggest that all three glasses have structures based on chains of Q2 phosphate groups. Clear structural differences are observed between the glasses containing Na2O and CaO. The P–O bonds to bridging and non-bridging oxygens are less well resolved in the neutron data from the samples containing CaO, suggesting a change in the nature of the bonding as the field strength of the cation increases Na+ → Ca2+. In the (CaO)0.5(P2O5)0.5 glass most of the Ca2+ ions are present in isolated CaOx polyhedra whereas in the (Na2O)0.5(P2O5)0.5 glass the NaOx polyhedra share edges leading to a Na–Na correlation. The results of the structural study are related to the properties of the (CaO)0.4(Na2O)0.1(P2O5)0.5 biomaterial.
机译:使用中子衍射和31P核磁共振波谱仪来探测具有一般成分(CaO)0.5-x(Na2O)x(P2O5)0.5(x = 0、0.1和0.5)的磷酸盐玻璃生物材料的结构。结果表明,所有三种玻璃均具有基于Q2磷酸基团链的结构。在含有Na2O和CaO的玻璃之间观察到明显的结构差异。在含有CaO的样品的中子数据中,与桥接氧和非桥接氧的P-O键解析得不太好,这表明随着阳离子的场强增加Na +→Ca2 +,键的性质发生了变化。在(CaO)0.5(P2O5)0.5玻璃中,大多数Ca2 +离子存在于孤立的CaOx多面体中,而在(Na2O)0.5(P2O5)0.5玻璃中,NaOx多面体共享边缘,从而导致Na-Na相关性。结构研究的结果与(CaO)0.4(Na2O)0.1(P2O5)0.5生物材料的特性有关。

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