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Investigation of lattice capacity effect on Cu²+-doped SnO₂ solid solution catalysts to promote reaction performance toward NOx-SCR with NH₃To understand the effect of the doping amount of Cu²+ on the structure and reactivity of SnO

Photocatalytic properties of solid solutions based on Bi[2]Fe[4]O[9]The photocatalytic properties of solid solutions based on Bi[2]Fe[4]O[9].

Formation of ceramic solid solutions in a SrTiO₃-BiScO₃ system of the formation of solid solutions in the (1 –x)SrTiO₃–xBiScO₃ system with x = 0.0, 0.1, 0.2, 0.3, 0.4, and 0

Phase transitions and electroconducting properties of BIMEVOX solid electrolytesCeramic solid solutions Bi4 (V1 - x Me x )2O11 - y (x= 0-0.3, Me = Zr, Ga, Fe) were obtained

Sensing properties of solid solutions Bi[1-x]La[x]Fe[1-x]Ga[x]O[3]] (x = 0, 0.05, 0.1) solid solutions prepared by the solid-state reactions method from

Growth, crystal structure, and properties of Cu2Zn1-xCdxSnS4 solid solutions to the first type according to the Rosebohm classification. The Cu 2 CdSnS 4 –Cu 2 ZnSnS 4 solid solution

Synthesis and magnetic properties of solid solutions In1–xGaxSb〈Mn〉Manganese-doped solid solutions In1–xGaxSb (x = 0.05, 0.1, 0.5, 0.9, 0.95) were synthesized

Effect of Composition on the Dielectric Properties of (1 – x)Ba(Ti0.75Sn0.25)O3 · xPbTiO3 Solid SolutionsAbstract—: (1 – x)Ba(Ti0.75Sn0.25)O3 ∙ xPbTiO3 (0 ≤ x ≤ 1) samples prepared by a standard ceramic

Low temperature magnetic properties of solid solutions based on lantanum indateLow temperature magnetic properties of solid solutions based on lantanum indate

Phase formation and physicochemical properties of perovskite complex oxides based on bismuth ferriteThe effect of the cationic composition on the formation of perovskite solid solutions based on bis

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