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Meeting MS&T23: Materials Science & Technology
Symposium Glasses and Optical Materials: Current Issues and Functional Applications
Presentation Title D-16: Structure and Properties of Lead Borate and Lead Alumino-borate Glasses
Author(s) Elizabeth M. Tsekrekas, Nagia S Tagiara, Randall E Youngman, Efstratios I Kamitsos, Alexis G Clare
On-Site Speaker (Planned) Elizabeth M. Tsekrekas
Abstract Scope Lead borate glasses in the system xPbO-(100-x)B2O3 made in platinum and alumina crucibles have been prepared and investigated by Raman, infrared reflectance and NMR spectroscopy to qualitatively determine the effect of Al2O3 contamination on the network. It was found that glasses melted in Al2O3 crucibles resulted in an expansion of the formation region from 30 < x < 80 to 20 < x < 85 as a result of alumina contamination. Both the Raman and infrared data suggest that the addition of Al2O3 to the network results in the under-modification of the borate network. This is further reflected in the low frequency Raman and infrared, which relates to the PbO network, where the Pb-O bond remains predominately a network modifier for a larger compositional range, suggesting the formation of AlO4 units charged balanced by Pb2+.

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

Accelerating Glass Discovery Using Artificial Intelligence and Machine Learning
Aluminum and Iron in Silicate Glasses and 5.1.8 Crystal
Bismuth Borosilicate Glass Containing Eu2O3 Stabilized Gold Nanoparticles with High Third-order Optical Nonlinearity
D-12: Assessing the Chemical Durability of Soda-lime-silica Glass with Beverages
D-13: Novel Fibers for Quantum Computing
D-14: Redistribution of Na+ Ions in Mixed Alkali-lime Glasses
D-15: Structural Effects of Alkali/Alkali Earth Cations on the Nickel-doped BK7 Type Borosilicate Glasses
D-16: Structure and Properties of Lead Borate and Lead Alumino-borate Glasses
Deciphering the Structural Origins of High Sulfur Solubility in Vanadium-containing Borosilicate Glasses
Developing a Method to Characterize the Crystallization and Viscosity Behaviors of Glassy Solid-state Electrolytes
Effect of Strain Rate on Mechanical and Fractographic Behaviour of Silica Based Optical Fibers
Er/Yb Co-doped Fully Transparent Yttrium-Lanthanum-Tellurite Glass-Ceramics for ~3 µm Emission
Extending the Glass Formation of Alkali Tellurites
Glassy Disorder and Macroscopic Properties
Investigation of Glasses Containing Heavy Metal Oxides as a Replacement to Lead Oxide
Mixed Modifier Effects on Structural, Mechanical, Chemical, and Mechanochemical Properties of Sodium Calcium Aluminosilicate Glass
New Composition Design to Improve Impact Resistance of Ultra-thin Glass for Foldable Display
Optical Characteristics of Transition Metal Doped II-VI Multifunctional Crystals
Progress Towards New Sodium Glassy Solid Electrolytes
Pushing Compositional Limits of Optical Fibers Fabricated Using the Molten Core Method
Radiation Effects on Amorphous Chalcogenides
Revealing the Structure of the Sodium-leached Layer of Soda Lime Silica Glass: A Comprehensive Spectroscopic Analysis
Revealing the Superior Scratch-resistance of Graphene-glass Surfaces
Rheological Behavior of Heavy-Metal Oxychloride Glass-Forming Liquids
Salt Formation and Detection in Nuclear Waste Glasses
StriderNET: A Graph Reinforcement Learning Approach to Optimize Glassy Structures on Rough Energy Landscapes
The Ductility of Silicate Glasses is Driven by Topological Heterogeneity
The Influence of Divalent Cations on the Network Structures and Properties of Phosphate and Aluminophosphate Glasses
Topological Phases and Melt Dynamics of the Equimolar Ternary Ge-As-S and Ge-P-Se Glass Systems
Volatile Crystalline Semiconductor Core Fibers

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