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Structural Changes in Borate Glasses

1974
A series of potassium borate glasses (100-x) B2O3.K2O) was prepared from analytical reagent chemicals and the glass samples were analysed for the determination of potassium and boron concentrations. Many physical and chemical properties of these glasses were studied and the property-composition curves are presented. Four structural changes are observed
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Structural Groupings in Borate Glasses

MRS Proceedings, 1985
A. A. Lebedev developed a crystallite model for glasses in the 1920's which was supported by the 1930 publication of Randall, Rooksby, and Cooper But, the 1932 publication by Zachariasen entitled “The Atomic Arrangement in Glass” introduced the Warren and Zachariasen continuous random network (CRN) model.
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Pseudospin Echoes in Borate Glasses

1984
The amorphous properties of a family of ionic conducting lithium borate glasses (B2O3 — x Li2O — y LiC1) have been measured recently [1]. From desaturation experiments an evaluation of the transverse relaxation time T2 (10−7 sec) of the pseudospins was possible when their minimum longitudinal relaxation time T1m was in the range of 10−5 sec.
M. Devaud, J.-Y. Prieur, W. D. Wallace
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Adult stem cell response to doped bioactive borate glass

Journal of Materials Science: Materials in Medicine, 2020
Nathan J. Thyparambil   +5 more
semanticscholar   +1 more source

Borate particulate photocatalysts for photocatalytic applications: A review

International Journal of Hydrogen Energy, 2022
Jia Yang, Xiaorui Sun
exaly  

Radiation shielding and physical properties of lead borate glass-doped ZrO2 nanoparticles

Applied Physics A, 2019
E. Wahab   +4 more
semanticscholar   +1 more source

5.7.2.2.1 Mn-borate glasses

2005
M. S. Seehra, G. Srinivasan
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