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A theoretical interpretation of the chemical shift of Si-29 NMR peaks in alkali borosilicate glasses

机译:碱金属硼硅酸盐玻璃中Si-29 NMR峰化学位移的理论解释

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摘要

In Si-29-NMR, it has so far been accepted that the chemical shifts of Q(n) Species (SiO4 units containing n bridging oxygens) were equivalent between alkali borosilicate, and boron-free alkali silicate classes. In the sodium borosilicate glasses with low sodium content. however. a contradiction was confirmed in the estimation of alkali distributions B-11 NMR suggested that Na ions were entirely distributed to berate groups to form BO4 units, whereas a -90 ppm component Was also observed in Si-29-NMR spectra, which has been attributed to Q(3) species associated with a nonbridging oxygen (NBO). Then. cluster molecular orbital calculations were performed to interpret the -90 ppm component in the borosilicate, glasses. It Was found that a silicon atom which had two tetrahedral borons (B4) as its second nearest neighbors was similar in atomic charge and Si2p energy to the Q(3) species in boron-free alkali silicates. Unequal distribution of electrons in Si-O-B4 bridging bonds was also found. where much electrons Were localized oil the Si-O bonds. It was finally concluded that the Si-O-B4 bridges with narrow bond angle were responsible for the -90 ppm Si-29 component in the borosilicate glasses. There still remained another interpretation: the Q(3) species were actually present in the glasses. and NBOs in the Q(3) species were derived from the tricluster groups. such as (O3Si)O(BO3)(2). In the classes With low sodium content. however. it was concluded that the tricluster groups were not so abundant to contribute to the -90 ppm component. Copyright (C) 2004 Elsevier Ltd.
机译:迄今为止,在Si-29-NMR中,Q(n)物种(含n个桥连氧的SiO4单元)的化学位移在碱金属硼硅酸盐和无硼碱金属硅酸盐类之间是等效的。在硼硅酸钠玻璃中钠含量低。然而。在碱分布的估计中证实了一个矛盾。B-11NMR表明,Na离子完全分布在贝酸酯基上形成BO4单元,而在Si-29-NMR光谱中也观察到-90 ppm的组分,这归因于与非桥接氧(NBO)相关的Q(3)种。然后。进行了分子簇轨道计算,以解释硼硅酸盐玻璃中的-90 ppm成分。发现具有两个四面体硼(B4)作为其第二近邻的硅原子在原子电荷和Si2p能量方面与无硼碱金属硅酸盐中的Q(3)相似。还发现电子在Si-O-B4桥键中分布不均。 Si-O键在许多电子集中在油中。最终得出的结论是,具有窄键角的Si-O-B4桥负责硼硅酸盐玻璃中的-90 ppm Si-29组分。仍然有另一种解释:眼镜中实际上存在Q(3)种。 Q(3)物种中的NBO和Triboster组中的NBO。例如(O3Si)O(BO3)(2)。在低钠含量的课程中。然而。得出的结论是,松散酯基团不是很丰富以至于不能产生-90 ppm的组分。版权所有(C)2004 Elsevier Ltd.

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