Abstract:
The paper deals with a study of the effect which the hydrothermal fluid pH has on the formation of a pyrochlore-structured phase in the Bi2O3-Fe2O3-WO3 system. It was shown that at pH of 1 and 8, the formation of pyrochlore-structured phase particles with crystallite sizes of 38 and 118 nm, respectively, is accompanied by the formation of the Bi2WO6 compound with the Aurivillius phase structure. At pH values from 2 to 7, only pyrochlore-structured nanocrystalline particles with a variable composition are formed. Under these conditions, the dependence of the average size of crystallites of the pyrochlore-structured phase particles on pH is extreme, as the size increases from ∼67 nm at pH 2 up to ∼126 nm at pH 5 and then decreases to ∼102 nm at pH 7. The samples obtained at pH 3-4 have a composition that is the closest to that specified for the synthesis. When pH increases up to 10, there forms a non-single-phase product that contains the Bi2WO6 phase and δ-Bi2O3-based phase.
Citation:
M. S. Lomakin, O. V. Proskurina, V. V. Gusarov, “Influence of hydrothermal synthesis conditions on the composition of the pyrochlore phase in the Bi2O3-Fe2O3-WO3 system”, Nanosystems: Physics, Chemistry, Mathematics, 11:2 (2020), 246–251
\Bibitem{LomProGus20}
\by M.~S.~Lomakin, O.~V.~Proskurina, V.~V.~Gusarov
\paper Influence of hydrothermal synthesis conditions on the composition of the pyrochlore phase in the Bi$_{2}$O$_{3}$-Fe$_{2}$O$_{3}$-WO$_{3}$ system
\jour Nanosystems: Physics, Chemistry, Mathematics
\yr 2020
\vol 11
\issue 2
\pages 246--251
\mathnet{http://mi.mathnet.ru/nano521}
\crossref{https://doi.org/10.17586/2220-8054-2020-11-2-246-251}
\isi{https://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcApp=Publons&SrcAuth=Publons_CEL&DestLinkType=FullRecord&DestApp=WOS_CPL&KeyUT=000529967400016}
\elib{https://elibrary.ru/item.asp?id=46755420}
Linking options:
https://www.mathnet.ru/eng/nano521
https://www.mathnet.ru/eng/nano/v11/i2/p246
This publication is cited in the following 2 articles:
Gordon J. Thorogood, Shirley Chang, Sarah C. Finkeldei, Pyrochlore Ceramics, 2022, 161
M. S. Lomakin, O. V. Proskurina, A. A. Levin, A. A. Sergeev, A. A. Leonov, V. N. Nevedomsky, S. S. Voznesenskiy, “Pyrochlore Phase in the Bi2O3–Fe2O3–WO3–(H2O) System: its Formation by Hydrothermal-Microwave Synthesis and Optical Properties”, Russ. J. Inorg. Chem., 67:6 (2022), 820