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Nanostructured hybrid particle, manufacturing method thereof, and device including the nanostructured hybrid particle

机译:纳米结构杂化粒子,其制造方法以及包括该纳米结构杂化粒子的装置

摘要

A nanostructured hybrid particle, a manufacturing method thereof, and a device including the nanostructured hybrid particle are disclosed. The nanostructured hybrid particle includes a hydrophobic base particle having a convex-concave nanopattern on a surface thereof; a hydrophobic light-emitting nanoparticle disposed in a concave portion of the convex-concave nanopattern on the surface of hydrophobic base particle; and a coating layer covering the hydrophobic base particle and the hydrophobic light-emitting nanoparticle. In the nanostructured hybrid particle, light extraction may occur in all 3-dimensional directions, and thus, the nanostructured hybrid particle can exhibit high light extraction efficiency compared to light extraction occurring on a two-dimensional plane.
机译:公开了一种纳米结构杂化粒子,其制造方法以及包括该纳米结构杂化粒子的装置。纳米结构杂化粒子包括在其表面上具有凹凸的纳米图案的疏水性基础粒子;和疏水发光纳米颗粒,其设置在疏水性基础颗粒表面的凹凸形纳米图案的凹部中。覆盖疏水基颗粒和疏水发光纳米颗粒的涂层。在纳米结构的杂化颗粒中,可以在所有3维方向上发生光提取,因此,与在二维平面上发生的光提取相比,纳米结构的杂化颗粒可以表现出高的光提取效率。

著录项

  • 公开/公告号US9842962B2

    专利类型

  • 公开/公告日2017-12-12

    原文格式PDF

  • 申请/专利权人 KOREA INSTITUTE OF SCIENCE AND TECHNOLOGY;

    申请/专利号US201514737464

  • 发明设计人 HYEIN YOO;KYOUNGJA WOO;

    申请日2015-06-11

  • 分类号H01L29/06;H01L31/00;H01L29/08;H01L33/00;H01L33/06;G01J5/60;G01J3/50;G01J1/42;H01L33/50;

  • 国家 US

  • 入库时间 2022-08-21 12:58:17

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