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Relationships between the medium-range structure of glasses and crystals

机译:玻璃的中程结构与晶体之间的关系

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The known structure of a crystalline phase is almost always useful in investigating the unknown structure of the compositionally equivalent glass. For the local environment around elements like Si, B and P, the correspondence between site geometry and symmetry can be impressively close. Beyond near neighbours, any relationship becomes less obvious - at least in real-space data. Progress in understanding the medium-range structures of glasses has been painfully slow as a result. One essential clue is given by reciprocal-space features at low Q (scattering vector) in X-ray or neutron scattering data, which are clearly related to the medium-range structure. Interpretation of these features as quasi-Bragg' scattering allows direct comparison between the structures of the glass and equivalent crystalline phases. Applications of this method will be illustrated in borates and silicates, together with some chalcogenide glasses. Correspondence between low-Q features for these glasses and compositionally-equivalent crystals is qualitatively good. In some cases there is semi-quantitative agreement too. Thus the essential flavour of the medium-range structure of several typical glasses appears to be interpretable, rather easily.
机译:结晶相的已知结构几乎总是可用于研究组成等效玻璃的未知结构。对于Si,B和P等元素周围的局部环境,位点几何形状和对称性之间的对应关系非常接近。除了近邻,任何关系都变得不那么明显-至少在真实空间数据中。结果,对眼镜的中档结构的理解进展缓慢。 X射线或中子散射数据中低Q(散射矢量)的倒数空间特征给出了一个基本线索,这显然与中程结构有关。将这些特征解释为准布拉格散射可以直接比较玻璃和等效晶相的结构。这种方法的应用将在硼酸盐和硅酸盐中以及一些硫族化物玻璃中加以说明。这些眼镜的低Q功能与成分等效的晶体之间的对应关系在质量上很好。在某些情况下,也存在半定量协议。因此,几种典型玻璃的中档结构的基本风味似乎很容易解释。

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