Formation of Na0.9Mo6O17in a Solid-Phase Process. Transformations of a Hydrated Sodium Molybdenum Bronze, Na0.23(H2O)0.78MoO3, with Heat Treatments in a Nitrogen Atmosphere
Author:
Publisher
The Chemical Society of Japan
Subject
General Chemistry
Link
https://www.jstage.jst.go.jp/article/bcsj1926/64/1/64_1_161/_pdf
Reference10 articles.
1. Molybdenum oxide bronzes with quasi-low-dimensional properties
2. Band electronic structure of the molybdenum blue bronze A0.30MoO3 (A = K, Rb)
3. Solid-state studies of potassium molybdenum bronzes
4. Crystal growth and electrical properties of lithium, rubidium, and cesium molybdenum oxide bronzes
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1. Materials design of perovskite solid solutions for thermochemical applications;Energy & Environmental Science;2019
2. Sodium–cesium molybdenum-oxide bronzes;Bulletin of the Russian Academy of Sciences: Physics;2016-05
3. ChemInform Abstract: Formation of Na0.9Mo6O17 in a Solid-Phase Process. Transformations of a Hydrated Sodium Molybdenum Bronze, Na0.23(H2O)0.78MoO3, with Heat Treatments in a Nitrogen Atmosphere.;ChemInform;2010-08-23
4. Low-temperature synthetic route based on the amorphous nature of giant species for preparation of lower valence oxides;Journal of Solid State Chemistry;2005-05
5. Hydrothermal synthesis of potassium molybdenum oxide bronzes: structure-inheriting solid-state route to blue bronze and dissolution/deposition route to red bronze;Journal of Solid State Chemistry;2005-01
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