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Electrophoretic Deposition of Highly Efficient Phosphors for White Solid State Lighting using near UV-Emitting LEDs.

机译:使用近紫外发光LED电泳沉积用于白色固态照明的高效荧光粉。

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摘要

Electrophoretic deposition (EPD) is a method to deposit particles dispersed in a liquid onto a substrate under the force of an applied electric field, and has been applied for depositing phosphors for application in solid state lighting. The objective is to deposit phosphors in a "remote phosphor" configuration for a UV-LED-based light source for improved white light extraction efficiency. It is demonstrated that EPD can be used to deposit red-, green-, blue-, yellow- and orange-emitting phosphors to generate white light using a near UV-emitting LED by either depositing a phosphor blend or sequentially individual phosphor compositions. The phosphor coverage was excellent, demonstrating that EPD is a viable method to produce phosphor layers for the "remote phosphor" white light design. The deposition rates of the individual phosphor films were ∼1-5 mum/min. The blend depositions composed of both three and four phosphor compositions emit white light located on or near the black body locus on the CIE chromaticity diagram. Phosphor films were also prepared by sequential deposition of red/orange and green/blue compositions, to generate white light. The layered films were flipped over and illuminated in this orientation, which showed approximately the same luminescence characteristics. No change in the reabsorption ratio of green/blue emission by the red/orange phosphor was found regardless of the deposited order of the layered films. These applications of EPD of phosphor for white solid state lighting are promising and effective due to easy tuning of emissive color by varying the phosphor blend compositions.;Although nanoparticles of a variety of materials have been coated by EPD, there have been few direct comparisons of EPD of nano- and micron-sized particles of the same material. Another field of the study was to compare EPD of nano-, nano core/SiO2 shell and micron-sized (Ba0.97 Eu0.03)2SiO4 phosphor particles for application in a near-UV LED-based light source. EPD from an amyl alcohol bath was able to produce uniform films for all particle sizes, whereas uniform films were produced only of micron-sized particles in an isopropyl alcohol bath. A new equation was developed for predicting the deposited mass, considering the change in concentration of particles in the bath from both settling and deposition, showed good agreement with the experimental values.
机译:电泳沉积(EPD)是一种在施加的电场力下将分散在液体中的颗粒沉积到基板上的方法,并且已经被用于沉积用于固态照明的磷光体。目的是为基于UV-LED的光源以“远程磷光体”配置沉积磷光体,以提高白光提取效率。已证明,EPD可用于沉积发射红色,绿色,蓝色,黄色和橙色的磷光体,从而通过发射磷光体混合物或依次沉积单个磷光体组合物,使用近紫外发射的LED产生白光。磷光体的覆盖范围极佳,表明EPD是生产用于“远程磷光体”白光设计的磷光体层的可行方法。各个荧光粉膜的沉积速率为〜1-5μm/ min。由三种和四种荧光粉组合物组成的共混物沉积物发出的白光位于CIE色度图上的黑体轨迹上或附近。还通过顺序沉积红色/橙色和绿色/蓝色组合物以产生白光来制备磷光膜。将层状膜翻转并以该方向照亮,这显示出大致相同的发光特性。无论层状膜的沉积顺序如何,都没有发现红色/橙色磷光体对绿色/蓝色发射的重吸收率发生变化。荧光粉EPD在白色固态照明中的这些应用前景广阔且有效,因为可以通过改变荧光粉共混物的组成来轻松调节发光颜色。尽管EPD涂覆了多种材料的纳米颗粒,但很少有直接比较。相同材料的纳米级和微米级粒子的EPD。该研究的另一个领域是比较纳米,纳米核/ SiO2壳和微米级(Ba0.97 Eu0.03)2SiO4荧光粉颗粒的EPD,以用于近紫外LED基光源。戊醇浴中的EPD能够针对所有粒径生产均一的薄膜,而异丙醇浴中仅由微米大小的颗粒而制得的均一薄膜。考虑到浴液中沉降和沉积过程中颗粒浓度的变化,开发了一个新的方程式来预测沉积质量,与实验值显示出良好的一致性。

著录项

  • 作者

    Choi, Jae Ik.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Engineering Materials Science.;Engineering General.;Nanotechnology.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 194 p.
  • 总页数 194
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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