Microstructural evolution and its influence on oxygen diffusion in yttrium-doped ceria thin films

Author:

Li JinzhanORCID,Lei LiORCID,Li Limin,Deng Bo,Zhao Gaoyang,Jin Lihua,Li Chengshan

Abstract

Abstract Ceria doped with rare earth ions (Ce1-xMxO2-y (y=x/2)), which contain many oxygen vacancies, have become excellent electrolyte materials for solid oxide fuel cells and important buffer layers for coated conductors. In this paper, Y3+ ions were doped into the lattice of CeO2 to form Ce1-xYxO2-y (CYO) thin films regarded as buffer layers to reduce oxygen diffusion on silicon substrates. It was revealed that the CYO films gradually transformed from a complete fluorite structure into a defective fluorite structure with more and more oxygen vacancies as the proportion of Y3+ ions in CYO films increased from zero, and then the defective fluorite structure transformed into rare earth C-type structure when the proportion of Y3+ ions was beyond 0.5. Moreover, at the beginning, the degree of oxygen diffusion showed an uptrend, but after the proportion of Y3+ ions reached a certain value, the degree of oxygen diffusion turned into a downtrend.

Funder

International Science and Technology Cooperation Project

Major Science and Technology Projects of Shaanxi Province

Publisher

IOP Publishing

Subject

Metals and Alloys,Polymers and Plastics,Surfaces, Coatings and Films,Biomaterials,Electronic, Optical and Magnetic Materials

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