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Monitor local structure variation of Ce3+ activator in YAG:Ce nanophosphor with calcination temperature by nuclear magnetic resonance spectroscopy

  • Beihang University
  • Beijing University of Technology
  • CAS - Innovation Academy for Precision Measurement Science and Technology

科研成果: 期刊稿件文章同行评审

摘要

Understanding the intrinsic relationship between photoluminescence (PL) properties and fine crystal structure is essential for developing excellent cerium doped Y3Al5O12 (YAG:Ce) nanophosphors. Herein, we studied the crystal structure evolution of YAG:Ce nanophosphors with calcination temperature via multiple characterization techniques, and focused on clarifying the local structure of Ce3+ activator by advanced quantitative 27Al magic angle spinning nuclear magnetic resonance (27Al MAS NMR) spectroscopy. The results showed that the crystallinity of the YAG:Ce nanophosphors was improved and the lattice constant monotonously decreased with rising calcination temperature. Especially, as the calcination temperature increased from 830 to 1030 °C, more Ce3+ ions entered the first sphere of AlO6 groups and the symmetry of AlO4 species gradually increased in YAG:Ce nanophosphors, which caused the decrease of geometrical distortion surrounding Ce3+ activators. Due to the variations of fine structure, the PL intensity obviously increased with calcination temperature while its position remained constant. When the calcination temperature further increased to 1080 °C, CeO2 impurity formed in the nanophosphor, resulting in the increase of the quenching centers.

源语言英语
页(从-至)929-935
页数7
期刊Journal of Alloys and Compounds
729
DOI
出版状态已出版 - 2017

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