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Journal ArticleDOI

The structure of vitreous boron oxide

R. L. Mozzi, +1 more
- 01 Aug 1970 - 
- Vol. 3, Iss: 4, pp 251-257
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TLDR
In this article, a new study of the structure of vitreous boron oxide has been made under greatly improved conditions, using Rh Kα radiation with the method of fluorescence excitation, reliable intensity values were measured to 4πsinθ/λ = 20
Abstract
A new study of the structure of vitreous boron oxide has been made under greatly improved conditions. Using Rh Kα radiation with the method of fluorescence excitation, reliable intensity values were measured to 4πsinθ/λ = 20 A−1, and a rigorous interpretation was obtained in terms of pair functions. Each boron is triangularly surrounded by 3 oxygen atoms with a B–O distance of 1.37 A. Each oxygen atom is bonded to 2 boron atoms. The major part of the glass is made up of boroxol groups B3O6 (a hexagonal ring of 3 boron atoms and 3 oxygen atoms with 3 corner oxygen atoms outside the ring). These groups are linked together by sharing the corner oxygen atoms, with randomness in orientation about the B–O bond directions at the shared oxygen atoms. Within the ring the B–O–B angle is 120° and at the shared oxygen it is approximately 130°. There is satisfactory agreement between the calculated and measured pair function distribution curves. In vitreous B2O3 the scheme of bonding does not fill space, and any boroxol group has neighboring groups which are not directly connected to it by B–O and O–B bonds. The measured pair function areas indicate neutral atoms, so that the bonding is predominantly covalent.

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Citations
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Journal ArticleDOI

Raman spectroscopic investigations of some bismuthate oxide glasses with manganese ions

TL;DR: In this paper, the influence of a gradual increase of MnO content on the glass structure and the effect of changing the glass matrix composition was investigated by Raman spectroscopy.
Journal ArticleDOI

STRUCTURAL INVESTIGATIONS OF THE MnO–Bi3O3–CdO GLASS SYSTEM BY IR AND RAMAN SPECTROSCOPIES

TL;DR: In this article, the authors identify by IR spectroscopy both the structural units BiO3 and BiO6 in the MnO-Bi3O3-CdO system, up to 50 mol% MnO.
Dissertation

A Study of Vitrified Nuclear Wasteforms by Molecular Dynamics, Electron Microscopy and Raman Spectroscopy

TL;DR: In this article, an attempt is made to create molecular dynamics (MD) models of borate glass, alkali borosilicate glasses, and UK vitreous High Level Radioactive Wasteforms.
Journal ArticleDOI

Inelastic light scattering in strontium borate glasses in the systemxSrO.(1−x)B2O3 and (SrCl2)y.[xSrO.(1−y−x)B2O3]1−y

TL;DR: In this paper, the effect of glass network modifying nature of SrO in binary borate matrix has been investigated and the effects of temperature variation of binary glasses has also been studied.
Journal ArticleDOI

On the Glass Structure of the Bi 2 O 3 –SiO 2 –GeO 2 System

TL;DR: In this article, the structure of the single-phase glass of the Bi2O3-GeO2 system and three-component BiO3/SiO2 and GeO4 tetrahedra was studied using X-ray scattering.
References
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Journal ArticleDOI

X-Ray Diffraction

Kathleen Lonsdale
- 01 Oct 1971 - 
TL;DR: Lipson and Steeple as mentioned in this paper interpreted X-ray powder diffraction patterns and found that powder-diffraction patterns can be represented by a set of 3-dimensional planes.
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