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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Structural Similarity on Multiple Length Scales and Its Relation to Devitrification Mechanism: A Solid-State NMR Study of Alkali Diborate Glasses and Crystals
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Structural Similarity on Multiple Length Scales and Its Relation to Devitrification Mechanism: A Solid-State NMR Study of Alkali Diborate Glasses and Crystals

机译:多个长度尺度上的结构相似性及其与失透机理的关系:碱金属硼酸盐玻璃和晶体的固态NMR研究

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摘要

The nature of the devitrification process is a fundamental problem in glass science and governs the ultimate stability of glass. It is hypothesized that the devitrification mechanism of a given glass composition is strongly correlated with the extent of structural similarity at the intermediate-range level between the glass and crystal phase to which it transforms. However, relatively little information is available to test this hypothesis because of the lack of long-range periodicity in glass and the absence of effective analysis methods. In this work Li2O-2B2O3 (L2B) and Na2O-2B2O3 (N2B) glasses, which respectively exhibit homogeneous (internal) and heterogeneous (surface) devitrification mechanisms, and corresponding crystals were prepared and comprehensively studied by using multiple solid state NMR techniques. Of those, ~(11)B MAS and MQMAS experiments were applied to reveal short-range order information; ~7Li and ~(23)Na spin-echo decay and ~(11)B(~6Li} and ~(11)B{~(23)Na} rotational echo double resonance (REDOR) experiments were used to determine homonuclear and heteronuclear interactions that can reflect the intermediate-range order. It was found that the local bonding environments of the L2B crystal and glass are quite similar, whereas there are significant differences in the N2B system. Moreover, the experimental results indicated that the second moment (M2) values of both homo- and heterodipolar interactions measured for the L2B glass are very close to those of its isochemical crystal, in contrast, the M2 values for N2B glass differ significantly from those of its crystal phase. These observations indicate the existence of a strong correlation between structural similarity at both the short and intermediate length scale, and nucleation mechanism.
机译:失透过程的性质是玻璃科学中的一个基本问题,它决定着玻璃的最终稳定性。假设给定玻璃组合物的失透机理与玻璃和其转变成的晶相之间的中间范围水平上的结构相似程度密切相关。但是,由于缺乏玻璃中的长周期周期性和有效的分析方法,因此可用于检验该假设的信息相对较少。在这项工作中,Li2O-2B2O3(L2B)和Na2O-2B2O3(N2B)玻璃分别表现出均质(内部)和异质(表面)失透机理,并使用多种固态NMR技术制备了相应的晶体并进行了全面研究。其中,〜(11)B MAS和MQMAS实验被用来揭示短程有序信息。使用〜7Li和〜(23)Na自旋回波衰减以及〜(11)B(〜6Li}和〜(11)B {〜(23)Na}旋转回波双共振(REDOR)实验确定同核和异核相互作用可以反映中间范围的顺序。发现L2B晶体和玻璃的局部键合环境非常相似,而N2B体系存在显着差异。此外,实验结果表明第二矩(M2 )L2B玻璃的同偶极和异偶极相互作用值都非常接近其等化学晶体,相反,N2B玻璃的M2值与其晶相存在显着差异,这些观察结果表明存在强的短和中等长度尺度上的结构相似性与成核机理之间的相关性。

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