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Utilization of All Hydrothermally Synthesized Red, Green, Blue Nanophosphors for Fabrication of Highly Transparent Monochromatic and Full-Color Plasma Display Devices

机译:利用所有水热合成的红色,绿色,蓝色纳米磷光体制造高度透明的单色和全彩色等离子显示设备

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摘要

Visible transparency is one of the attributes pursued in the advancement of display devices. Such a transparency can be realized in a plasma display device simply by applying Y(V,P)O_4:Eu red-, Y(V,P)O_4:Tm blue-, and LaPO_4:Ce,Tb green-emitting nanophosphors with a controlled particle size and reasonable luminescence. The nanophosphors of three primary colors are all hydrothermally synthesized and annealed at appropriate conditions. Highly transparent, uniform emissive layers are deposited by screen-printing the nanophosphor pastes. Using respective screen-printed nanophosphor layers of red, blue, and green, monochromatic transparent test panels of plasma display are fabricated and characterized. Ultimately, a white-luminescing full-color transparent panel is successfully demonstrated by line-patterning the individual nanophosphor layers. Furthermore, for an effort to extract more photons and thus improve the brightness of the test panel, polystyrene monolayer-based 2D photonic crystal is introduced as a scattering medium on the outer surface of the panel and its usefulness was proved.
机译:可见的透明性是显示设备发展中追求的特性之一。可以通过在等离子显示设备中简单地通过使用发射光的Y(V,P)O_4:Eu红色,Y(V,P)O_4:Tm蓝色和LaPO_4:Ce,Tb绿色发射纳米荧光粉来实现这种透明性。控制粒径和合理的发光。三种原色的纳米磷光体都是水热合成的,并在适当的条件下进行退火。通过丝网印刷纳米磷光剂浆料沉积高度透明,均匀的发射层。使用红色,蓝色和绿色的各自的丝网印刷纳米磷光层,制造并表征了等离子体显示器的单色透明测试面板。最终,通过对单个纳米磷光体层进行线型图案化,成功地证明了白色发光的全色透明面板。此外,为了努力提取更多的光子,从而提高测试面板的亮度,在面板的外表面引入了聚苯乙烯单层基二维光子晶体作为散射介质,并证明了其有用性。

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  • 来源
    《Advanced Functional Materials》 |2012年第9期|p.1885-1893|共9页
  • 作者单位

    Department of Materials Science and Engineering Hongik University 72-1 Sangsu-dong, Mapo-gu, Seoul 121-791, Korea;

    Department of Materials Science and Engineering Hongik University 72-1 Sangsu-dong, Mapo-gu, Seoul 121-791, Korea;

    Department of Chemistry Kookmin University 77 Jeongneung-ro, Seongbuk-gu, Seoul 136-702, Korea;

    Department of Materials Science and Engineering Hongik University 72-1 Sangsu-dong, Mapo-gu, Seoul 121-791, Korea;

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