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Glass formation in AgI:Ag2O:V2O5 and AgI:Ag2O: (V2O5+B2O3) systems: Application to solid state battery

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TLDR
In this paper, the authors investigated the transport properties of glasses in the system AgI:Ag 2 O:V 2 O 5 +B 2 O 3 ) and found that at high AgI concentrations, the addition of another glass former did not improve the conduction characteristics of pure vanadate glasses, the best conducting composition of which had ambient temperature, ionic conductivity comparable to that of conventional liquid electrolytes.
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This article is published in Solid State Ionics.The article was published on 1988-09-01. It has received 8 citations till now. The article focuses on the topics: Solid-state battery & Ionic conductivity.

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A solid-state electrochemical cell

TL;DR: In this paper, a solid-state electrochemical cell is described that comprises at least one pair of electrodes and a silver-ion conductive solid-electrolyte layer disposed between the electrodes, wherein one of the electrodes contains as an electrode active material a compound oxide composed of silver and transition metal oxide.
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Fast ion conducting phosphate glasses and glass ceramic composites: Promising materials for solid state batteries

TL;DR: In this article, the authors presented an overview on various types of FIC glasses and glass ceramic composites. And they found that the glass-ceramic composites show enhanced ionic conduction, better ionic transference, better OCV value and discharge characteristics.
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Ionic conductivity of all-glass composites in the AgI–Ag2O–P2O5 system

TL;DR: In this article, a phenomenological model of effective conductivity of all-glass composites was proposed and tested, and the Uvarov model appeared to be unsuitable for the description of the effective conductivities of the composites as a function of composition and temperature.
Journal ArticleDOI

Electrical properties of silver vanadate electrochemical cells

TL;DR: In this paper, a ternary system xAgI-yAg2O-zV2O5 (x = 10, 20, 30, …, 90; y/z = 2) was prepared by rapid quenching of the melt at liquid nitrogen temperature.
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The effect of the nanodiamonds additive on ionic conductivity of silver iodide

TL;DR: In this article, the authors used X-ray diffraction, differential scanning calorimetry (DSC) and impedance spectroscopy to investigate the ionic conductivity of AgI-CND composites.
References
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Solid‐State Ionics: A New High Ionic Conductivity Solid Electrolyte Ag6 I 4 WO 4 and Use of This Compound in a Solid‐Electrolyte Cell

TL;DR: In this article, a new high ionic conductivity solid Ag/sub 6/I/sub 4/WO/Sub 4/AgI-Ag/sub 2 WO/sub 3 4/4/I /sub 2/I 0.047 (ohm.cm)/sup -1/ at 25/sup 0/C and an activation energy for conduction of 3.6 KCaL/mole between 20/Sup 0/ and 293/sup 1/C.
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Solid silver ion conductors

TL;DR: In this article, the various silver ion high conductivity solids are reviewed, together with those showing both high ionic and electronic conductivity, and the introduction of foreign cations or anions into the lattice of silver iodide has been attempted.
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