Effect of Alkali Compound on Morphology and Luminescence Intensity of Europium-doped Yttria

Astuti Astuti, M. Abdullah, K. Khairurrijal
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Abstract

Luminescent particles of europium-doped yttria (Y2O3:Eu) have been synthesized by heating nitrous precursors in a solution of polyethylene glycol (PEG) matrix containing alkali compound (LiOH, NaCl, KCl, and CaCl2). High luminescence intensity at around 612 nm contributed by electron transitions in Eu3+(5D0 → 7F0, 5D0  → 7F1,5D0 → 7F2, and 5D0 → 7F3) were observed. The highest intensity was observed in samples prepared using Li compound, but he smallest particle size was observed in samples prepared using Ca compound. This approach is promising for production of submicrometer down to nanometer-sized Y2O3:Eu particles that have both small in particle sizes and high luminescence intensity which is potential for use in development of luminescence ink that can be adapted to the current ink jet printing technology.
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在含碱化合物(LiOH, NaCl, KCl和CaCl2)的聚乙二醇(PEG)基质溶液中加热亚氮前驱体,合成了铕掺杂钇(Y2O3:Eu)的发光粒子。Eu3+中的电子跃迁(5D0→7F0、5D0→7F1、5D0→7F2和5D0→7F3)在612 nm左右产生了较高的发光强度。用Li化合物制备的样品强度最大,而用Ca化合物制备的样品粒径最小。该方法有望生产亚微米到纳米尺寸的Y2O3:Eu颗粒,这些颗粒尺寸小且发光强度高,具有开发发光油墨的潜力,可以适应当前的喷墨打印技术。
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