New Ceramic Material Y2‐xVxO3+x ‐ Mechanochemical Synthesis and Some Physicochemical Properties

陶瓷 材料科学 矿物学 X射线晶体学 结晶学 冶金 物理 化学 光学 衍射
作者
Mateusz Piz,E. Filipek,Kamil Kwiatkowski,Piotr Dulian,W. Bąk,Rafał J. Wróbel
出处
期刊:ChemNanoMat [Wiley]
标识
DOI:10.1002/cnma.202400337
摘要

Abstract Potential applications of known compounds from the V 2 O‐Y 2 O 3 system, i. e. YVO 4 , Y 8 V 2 O 17 and Y 10 V 2 O 20 , were the inspiration to undertake research, the main goal of which was to determine whether unknown phases of the solid solution type are formed in this system. Solid solutions are still sought‐after phases because their properties depend on their chemical composition. In this work it was experimentally demonstrated that a new substitute solid solution with the formula Y 2‐x V x O 3+x (0.00<×<0.60) is formed from mixtures of V 2 O 5 with Y 2 O 3 as a result of mechanochemical synthesis. Its properties were examined by using, i.a. XRD (X‐ray diffraction) and UV‐Vis‐DRS (ultraviolet‐visible light spectroscopy with diffusion reflectance) methods. It was found among other things, that it crystallizes in a regular system, exhibits a Y 2 O 3 structure and is thermally stable up to at least 800 °C (for x=0.40). Moreover, the estimated value of the band gap width indicated that the solid solution Y 2‐x V x O 3+x belongs to the class of semiconductors. The study of dielectric properties of new phase was performed by means of broadband dielectric spectroscopy. The obtained measurement data showed the presence of relaxation type dielectric mechanisms. The thermally activation energies of the relaxation processes related to the electric conductivity were calculated.

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