Publication | Open Access
Fabrication of high color rendering index white LED using Cd-free wavelength tunable Zn doped CuInS_2 nanocrystals
33
Citations
20
References
2012
Year
Crystal StructureOptical MaterialsEngineeringColloidal NanocrystalsChemistryCuins_2 NanocrystalsLuminescence PropertySemiconductorsLight-emitting DiodesMaterials SciencePhotoluminescenceNanotechnologyHigh ColorPhotonic MaterialsOptoelectronic MaterialsNanocrystalline MaterialNanomaterialsApplied PhysicsZcis NcsOptoelectronicsDual Zcis Ncs
Highly luminescent Cd-free Zn doped CuInS(2) nanocrystals (ZCIS NCs) were synthesized, and their properties were evaluated using X-ray diffraction, Raman, UV, and photoluminescence. The crystal structure of the ZCIS NCs was similar to the zinc blende, and the lattice constant decreased with increasing Zn concentration. By incorporation of Zn, the emission wavelength was tuned from 536 to 637 nm with concomitant enhancement of the quantum yield up to 45%. A white light emitting diodes, integrating dual ZCIS NCs (λ(em) = 567, and 617 nm) and a 460 nm InGaN LED, exhibited a high color rendering index of 84.1 with a warm color temperature of 4256.2K. The CIE-1931 chromaticity coordinates were slightly shifted from (0.3626, 0.3378) at 20 mA to (0.3480, 0.3206) at 50 mA.
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