4.7 Article

Improvement of the Heat Resistance of Prussian Blue Nanoparticles in a Clay Film Composed of Smectite Clay and epsilon-Caprolactam

Journal

INORGANIC CHEMISTRY
Volume 57, Issue 11, Pages 6214-6217

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.inorgchem.8b00707

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Prussian blue (PB) is limited in its application by its breakdown at elevated temperatures. To improve the heat resistance of PB, we prepared a composite film comprising PB nanoparticles (NPs), smectite clay, and an organic compound. The composite film had a microstructure in which PB NPs were intercalated between smectite/organic compound layers. The predominant oxidation temperature of the PB NPs in the composite film was around 500 degrees C in air, higher than the oxidation temperature of bulk PB in air (250 degrees C). This improvement in the oxidation temperature may be due to the composite film acting as a barrier to oxygen gas. These results indicate the effectiveness of clay materials for the improvement of heat resistance for low-temperature decomposition compounds, not only PB but also other porous coordination polymers.

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