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Preparation of Hierarchically Porous Nanocrystalline <scp> CaTiO <sub>3</sub> </scp> , <scp> SrTiO <sub>3</sub> </scp> and <scp> BaTiO <sub>3</sub> </scp> Perovskite Monoliths

Olim RuzimuradovDepartment of Chemistry Graduate School of Science Kyoto University Kyoto 606‐8502 JapanGeorge HasegawaDepartment of Chemistry Graduate School of Science Kyoto University Kyoto 606‐8502 JapanKazuyoshi KanamoriDepartment of Chemistry Graduate School of Science Kyoto University Kyoto 606‐8502 JapanKazuki NakanishiDepartment of Chemistry Graduate School of Science Kyoto University Kyoto 606‐8502 Japan
2011en
ABI

Аннотация

Hierarchically porous nanocrystalline CaTiO 3 , SrTiO 3 , and BaTiO 3 ceramics have been produced by impregnating corresponding alkaline‐earth metal ions into preformed macroporous TiO 2 monoliths in a solution containing urea, followed by calcination. The macroporous TiO 2 had been obtained via the sol–gel process accompanied by phase separation utilizing a chelating agent, ethyl acetylacetonate (EtAcAc) , together with mineral salt and ammonium chloride, to decrease the reactivity of titanium alkoxide. Formations of CaCO 3 , SrCO 3 , and BaCO 3 on the surface of TiO 2 monoliths are promoted by CO 2 generated by the concurrent two processes during impregnation; hydrolysis, and decarbonation of the chelating agent EtAcAc , and hydrolysis of urea at 60°C. The latter also raises pH of the impregnating solution which further promotes the mineralization of the carbonate salts. Calcination of the resultant monolithic composite of metal carbonate/ TiO 2 allows the crystallization of metal titanate. The addition of urea to the impregnating solution is found to be an effective strategy for the formation of perovskite monoliths by the impregnation process. This study provides a versatile approach to the preparation of hierarchically porous titania‐based perovskites.

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