[Study on the spectral properties of Ca7(SiO4)2Cl6 phosphor for white LED].

Guang Pu Xue Yu Guang Pu Fen Xi

College of Physics Science and Technology, Hebei University, Baoding 071002, China.

Published: April 2012

AI Article Synopsis

  • A bluish green phosphor, Ca7 (SiO4)2Cl6 : Eu2+, was created using a high-temperature method for use in UV excited white LEDs.*
  • XRD analysis confirmed the phosphor was a single phase, with luminescence exhibiting two main emission peaks at 418 nm and 502 nm.*
  • The study found that the best luminescence intensity occurred at an optimal doping concentration of 0.75 mol% of Eu2+ ions, making this phosphor a promising option for UV-based white LED applications.*

Article Abstract

A bluish green Ca7 (SiO4)2Cl6 : Eu2+ phosphor used for UV excited white LED was synthesized by high temperature solid state method. The XRD patterns and luminescence properties were investigated. The results indicated that the sample was single Ca7 (SiO4)2Cl6 phase; the emission spectrum included two emission peaks located at 418 and 502 nm, respectively. Monitoring for the two emission peaks, the excitation spectra were two broad band peaks centered at 290 and 360 nm respectively, which illustrated that Eu2+ ions located at two different crystal lattice sites. The influence of Eu2+ ions concentration on the luminescence intensity was studied and the optimal doping concentration was 0.75 mol%. The results showed that this phosphor was a better candidate bluish phosphor for UV based white LED.

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[Study on the spectral properties of Ca7(SiO4)2Cl6 phosphor for white LED].

Guang Pu Xue Yu Guang Pu Fen Xi

April 2012

College of Physics Science and Technology, Hebei University, Baoding 071002, China.

Article Synopsis
  • A bluish green phosphor, Ca7 (SiO4)2Cl6 : Eu2+, was created using a high-temperature method for use in UV excited white LEDs.*
  • XRD analysis confirmed the phosphor was a single phase, with luminescence exhibiting two main emission peaks at 418 nm and 502 nm.*
  • The study found that the best luminescence intensity occurred at an optimal doping concentration of 0.75 mol% of Eu2+ ions, making this phosphor a promising option for UV-based white LED applications.*
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