Proton state in hydrated fluoro-substituted brownmillerites Ba2In2O5-0.5y F (y) a (TM) nDe(2)D / Animitsa I. E.,Tarasova N. A.,Denisova T. A.,Baklanova Ya. V. // JOURNAL OF STRUCTURAL CHEMISTRY. - 2016. - V. 57, l. 5. - P. 910-916.

ISSN/EISSN:
0022-4766 / 1573-8779
Type:
Article
Abstract:
Solid solutions Ba2In2O5-0.5y F (y) with the structure of brownmillerite are studied by IR and (1)De MAS NMR spectroscopy. During the fluorine doping, the nearest oxygen environment of indium atoms is distorted and a part of In-O bonds is shortened. It is shown that partial fluoride ion substitution for oxygen atoms results in an increase in the proton mobility in hydrated Ba2In2O5-0.5y F (y) a (TM) nDe(2)D phases.
Author keywords:
brownmillerite; anion doping; H-1 MAS NMR; vibrational spectroscopy; proton mobility OXIDE-ION CONDUCTIVITY; SOLID-SOLUTION SYSTEM; ELECTRICAL-PROPERTIES; WATER INCORPORATION; DOPED BA2IN2O5; (BA1-XLAX)(2)IN2O5+X; GA; BA2IN2O5-RECTANGLE; ELECTROLYTE; STABILITY
DOI:
10.1134/S0022476616050097
Web of Science ID:
ISI:000390016500009
Соавторы в МНС:
Другие поля
Поле Значение
Month SEP
Publisher MAIK NAUKA/INTERPERIODICA/SPRINGER
Address 233 SPRING ST, NEW YORK, NY 10013-1578 USA
Language English
EISSN 1573-8779
Keywords-Plus OXIDE-ION CONDUCTIVITY; SOLID-SOLUTION SYSTEM; ELECTRICAL-PROPERTIES; WATER INCORPORATION; DOPED BA2IN2O5; (BA1-XLAX)(2)IN2O5+X; GA; BA2IN2O5-RECTANGLE; ELECTROLYTE; STABILITY
Research-Areas Chemistry
Web-of-Science-Categories Chemistry, Inorganic \& Nuclear; Chemistry, Physical
Author-Email Irina.Animitsa@urfu.ru
ResearcherID-Numbers Tarasova, Natalia/E-4534-2017
Funding-Acknowledgement Ural Federal University; Ural Branch, Russian Academy of Sciences {[}02.A03.21.0006]
Funding-Text This work was supported by the fundamental and exploratory research program within the cooperation agreement between Ural Federal University and the Ural Branch, Russian Academy of Sciences, contract no. 02.A03.21.0006.
Number-of-Cited-References 31
Usage-Count-Last-180-days 3
Usage-Count-Since-2013 8
Journal-ISO J. Struct. Chem.
Doc-Delivery-Number EF0LI