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Structure of Silver Iodide Dibenzoate
Nature, 1957SIMONINI1 found that the reaction of silver carboxylates with one equivalent of iodine gave compounds of the general formula (R·CO2)2AgI: for example, 2Ph·CO2Ag + I2 → (Ph·CO2)2AgI + AgI. These compounds were further investigated by Wieland and Fischer2, while Crawford and Simonds3 have more recently confirmed a similar formulation for the compounds ...
I. R. BEATTIE, D. BRYCE-SMITH
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Growth of silver iodide crystals
Journal of Crystal Growth, 1970Abstract Silver iodide crystals several millimeters on an edge were grown from KI-AgI-H2O solutions by slow dilution of the solutions with water from the vapor phase.
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Silver rubidium iodide solid electrolyte
Journal of Applied Chemistry and Biotechnology, 1971AbstractSilver rubidium iodide (RbAg4I5) is a unique solid electrolyte because of its extremely high conductivity which has an almost negligible electronic contribution. This characteristic makes RbAg4I5 a very promising electrolyte for the development of high‐power solid‐state batteries. Consequently, a considerable amount of work has been carried out
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Silver iodide–hexamethylethylenediamine
Acta Crystallographica Section B Structural Crystallography and Crystal Chemistry, 1975J. Coetzer, M. M. Thackeray
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Interfacial electrochemistry of silver iodide
Advances in Colloid and Interface Science, 1978Bijsterbosch, B.H., Lyklema, J.
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Structure of Hexagonal Silver Iodide
The Journal of Chemical Physics, 1963A detailed three-dimensional refinement of the structure of hexagonal silver iodide from room-temperature photographic data showed very little deviation from the ideal wurtzite-type structure. Using anisotropic temperature factors a final R value of 6.6% was obtained. The space group is P63mc, a=4.592, c=7.510, c/a=1.635, μ=0.3747.
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The Silver-Silver Iodide Electrode
Journal of the American Chemical Society, 1940Robert K. Gould, W. C. Vosburgh
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