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Synthesis and Cathodoluminescent Properties of Y2O3: Eu3+ Phosphor with Micron-sized Controllable Particles
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Synthesis and Cathodoluminescent Properties of Y2O3: Eu3+ Phosphor with Micron-sized Controllable Particles
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National Natural Science Foundation of China (51071117); Major State Basic Research Development Program of China (“973” Program) (2012CB619401); the Fundamental Research Funds for Central Universities and the Science

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    摘要:

    熒光粉的發(fā)光性能對其形貌非常敏感,特別是熒光粉的尺寸。場發(fā)射顯示器所需的熒光粉應(yīng)是微米級的球狀,然而可控的微米級熒光粉受到很少的關(guān)注。因此,本實驗通過改進的共沉淀法制備合成了幾微米的近球型紅色Y2O3:Eu3+熒光粉。該產(chǎn)品在1050 ℃,pH值為5.5時,形貌均勻,粒徑分布為0.9~3.1 μm,且發(fā)光亮度較商用的增加50%以上。結(jié)果表明,通過改良的共沉淀法可以制備出一種高質(zhì)量的FED熒光粉。

    Abstract:

    The luminescent properties of phosphors are sensitive to their morphologies, particularly to the sizes of phosphor particles. The optimal morphology of the phosphor for the field emission display (FED) is the microsized sphere-like particles. However, less attention has been paid to the phosphors with micron-size controlled particles. In this paper, we reported an improved co-precipitation method to synthesize the red-emitting Y2O3:Eu3+ phosphor with the particle sizes controlled in several microns. The optimum phosphors were obtained at the calcination temperature of 1050 °C and pH=5.5, showing the sphere-like particles with the size distribution from 0.9 μm to 3.1 μm. Compared with the commercial phosphors, such optimum phosphors greatly enhance the cathodoluminescent properties and the corresponding luminescence intensity under the low excitation voltage of 1 kV is increased by 50%. Results indicate an effective way to develop the high-quality FED phosphors.

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王潔瓊,楊 森,曹子君,鄭阿群,孫占波,宋曉平. Synthesis and Cathodoluminescent Properties of Y2O3: Eu3+ Phosphor with Micron-sized Controllable Particles[J].稀有金屬材料與工程,2014,43(10):2316~2320.[Wang Jieqiong, Yang Sen, Cao Zijun, Zheng Aqun, Sun Zhanbo, Song Xiaoping. Synthesis and Cathodoluminescent Properties of Y2O3: Eu3+ Phosphor with Micron-sized Controllable Particles[J]. Rare Metal Materials and Engineering,2014,43(10):2316~2320.]
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  • 收稿日期:2013-10-14
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  • 在線發(fā)布日期: 2015-04-07
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