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Наносистемы: физика, химия, математика, 2014, том 5, выпуск 4, страницы 553–563
(Mi nano885)
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Synthesis and photocatalytic activity of quasi-one-dimensional (1-D) solid solutions Ti$_{1-x}$M$_{x}$O$_{2-2x/2}$ (M(III)= Fe(III), Ce(III), Er(III), Tb(III), Eu(III), Nd(III) and Sm(III), $0\le x\le 0.1$)
E. V. Polyakov, V. N. Krasil'nikov, O. I. Gyrdasova, L. Yu. Buldakova, M. Yu. Yanchenko Institute of Solid State Chemistry UB RAS, str. Pervomajskaya, 91,620990, Ekaterinburg, Russia
Аннотация:
Quasi-one-dimensional (1–D) solid solutions Ti$_{1-x}$M$_{x}$O$_{2-2x/2}$ (M(III)= Fe(III), Ce(III), Er(III), Tb(III), Eu(III), Nd(III), Sm(III), $0\le x\le 0.1$) with the anatase structure have been synthesized by heating glycolate
Ti$_{1-x}$M$_{x}$(OCH$_2$CH$_2$O)$_{2-x/2}$ in air at a temperature above 450$^\circ$C. A method was proposed for the production ofiron-and carbon-doped titanium dioxide with the anatase structure Ti$_{1-x}$Fe$_{x}$O$_{(2-x/2)-y}$C$_y$ and of composites basedthereon containing an excessive carbon content. It was shown that the oxide solid solutions exhibit photocatalyticactivity in the hydroquinone photooxidation reaction during irradiation in the ultraviolet spectrum. A correlationwas established between the hydroquinone oxidation rate and the concentration of the substituting ions “M” in thecatalyst. In the framework of the theory of ion-covalent binary solid solutions, a correlation was found betweenthe energy of the photocatalytic reaction and the estimated mixing enthalpy of binary solid solutions formation.
Ключевые слова:
glycolates, three-charged cations, anatase, synthesis, photocatalytic properties.
Поступила в редакцию: 16.06.2014 Исправленный вариант: 30.06.2014
Образец цитирования:
E. V. Polyakov, V. N. Krasil'nikov, O. I. Gyrdasova, L. Yu. Buldakova, M. Yu. Yanchenko, “Synthesis and photocatalytic activity of quasi-one-dimensional (1-D) solid solutions Ti$_{1-x}$M$_{x}$O$_{2-2x/2}$ (M(III)= Fe(III), Ce(III), Er(III), Tb(III), Eu(III), Nd(III) and Sm(III), $0\le x\le 0.1$)”, Наносистемы: физика, химия, математика, 5:4 (2014), 553–563
Образцы ссылок на эту страницу:
https://www.mathnet.ru/rus/nano885 https://www.mathnet.ru/rus/nano/v5/i4/p553
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