JOURNAL ARTICLE

INFLUENCE OF LITHIUM ION OUTDIFFUSION ON THE CRYSTALLINITY OF MAGNESIUM DIFFUSED LITHIUM NIOBATE SURFACE LAYER

Wenxiu QueYao Xi西安交通大学电子材料研究室,西安710049

Year: 1996 Journal:   Acta Physica Sinica Vol: 45 (5)Pages: 811-811   Publisher: Science Press

Abstract

With the conventional X-ray diffraction and grazing-incidence X-ray diffraction. We have investigated the MgO-rich layer characteristics in the magnesium diffused lithium niobate single crystal, when the magnesium-ion indiffusion process in the layer is carried out in atmosphere. It is found that the MgO-rich layer exhibits the crystal structure of Li3Mg2NbO6 and Mg4Nb2O9, when indiffusion time for magnesium-ion is short. these aspects indicate that Li3Mg2NbO6 is in the subsurface layer of MgO-rich layer and Mg4Nb2O9 forms an uniform layer in the MgO-rich layer.When further increasing diffusion time the lithium-ion outdiffusion from the bulk of lithium niobate become prominent and Li3Mg2NbO6 and Mg4Nb2O9 compounds disappear in succession, and LiNb3O8 compound structure appears consequentially. It is observed by scanning electron microscopy that the surface of magnesium diffused lithium niobate indicates a multicrystal structure, the decomposing and disappearing processes of these surface layer compounds are also revealed

Keywords:
Lithium niobate Materials science Crystallinity Magnesium Lithium (medication) Layer (electronics) Surface layer Ion Scanning electron microscope Crystal (programming language) X-ray crystallography Diffraction Mineralogy Analytical Chemistry (journal) Composite material Optics Metallurgy Chemistry Optoelectronics

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Topics

Luminescence Properties of Advanced Materials
Physical Sciences →  Materials Science →  Materials Chemistry
Geochemistry and Elemental Analysis
Physical Sciences →  Earth and Planetary Sciences →  Geochemistry and Petrology
Glass properties and applications
Physical Sciences →  Materials Science →  Ceramics and Composites

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