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Structural characterization of fluorine containing glasses by F-19 Al-27 Si-29 and P-31 MAS-NMR spectroscopy

机译:F-19 Al-27 Si-29和P-31 MAS-NMR光谱分析含氟玻璃的结构

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Fluorine containing glasses are important components for glass ionomer cements. Their main advantage is the long-term fluoride release during application. This paper deals with the MAS-NMR structural characterization of a series of fluorine containing glasses that could possibly be used for glass ionomer cements and they are based on the following composition: (1.5)SiO(2)center dot Al(2)O(3)center dot(0.5/0.25)P(2)O(5)center dot(1 - Z - Y)CaO center dot(0.5)CaF(2)center dot(Z)SrO center dot(Y)Na2O, where X=0.5, Y=0.0 or 0.2 and Z=0.0, 0.8 and 1.0. In some of the glasses, CaO is replaced with SrO that gives radio-opacity to the final glass ionomer cement. Si-29 MAS-NMR spectra gave strong evidence for the presence of Q(4)(4Al) and Q4(3Al) species. Al-27 MAS-NMR spectra showed the presence of largely Al(IV) and a smaller proportion of Al(VI) particularly in glasses with high phosphorus content. There is evidence for the presence of [P-(OAl)(n)(4 - n)O]((4-n)-) species. In low sodium containing glasses, the principal P species was Al-O-PO43-. The presence of sodium and the low phosphorus content favored amorphous phase separation as shown by the P-31 MAS-NMR spectra and the presence of orthophosphate, especially in the case of glasses with low phosphorus content. The main species observed by F-19 MAS-NMR spectra were F-Ca/Sr(n) and Al-F-Ca/Sr(n), however when Na,O was present a weak peak attributed to Al-FNa(n) was also present reflecting the low sodium content of the glasses. (c) 2005 Elsevier B.V. All rights reserved.
机译:含氟玻璃是玻璃离聚物水泥的重要成分。它们的主要优点是在使用过程中长期释放氟化物。本文研究了可能用于玻璃离聚物水泥的一系列含氟玻璃的MAS-NMR结构表征,它们基于以下成分:(1.5)SiO(2)中心点Al(2)O( 3)中心点(0.5 / 0.25)P(2)O(5)中心点(1-Z-Y)CaO中心点(0.5)CaF(2)中心点(Z)SrO中心点(Y)Na2O,其中X = 0.5,Y = 0.0或0.2以及Z = 0.0、0.8和1.0。在某些玻璃中,CaO被SrO替代,从而使最终的玻璃离聚物胶粘剂具有不透射线性。 Si-29 MAS-NMR光谱为存在Q(4)(4Al)和Q4(3Al)物种提供了有力的证据。 Al-27 MAS-NMR光谱显示存在大量Al(IV)和较少比例的Al(VI),特别是在磷含量高的玻璃中。有证据表明存在[P-(OAl)(n)(4-n)O]((4-n)-)物种。在低钠玻璃中,主要的P物质为Al-O-PO43-。如P-31 MAS-NMR光谱所示,钠的存在和低磷含量有利于非晶相分离,而正磷酸盐的存在则有利于非晶相分离,特别是在磷含量低的玻璃中。通过F-19 MAS-NMR光谱观察到的主要物种为F-Ca / Sr(n)和Al-F-Ca / Sr(n),但是当Na,O存在时,归因于Al-FNa(n)的弱峰)也反映出玻璃的低钠含量。 (c)2005 Elsevier B.V.保留所有权利。

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