• Optoelectronic Technology
  • Vol. 41, Issue 1, 27 (2021)
Shiyao CHEN, Peiqi CHEN, Yalian WENG, Yan WU, Chaoxing WU, Xiongtu ZHOU, Yongai ZHANG*, and Tailiang GUO
Author Affiliations
  • [in Chinese]
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    DOI: 10.19453/j.cnki.1005-488x.2021.01.005 Cite this Article
    Shiyao CHEN, Peiqi CHEN, Yalian WENG, Yan WU, Chaoxing WU, Xiongtu ZHOU, Yongai ZHANG, Tailiang GUO. Study on Fabrication and Color Conversion of InP/ZnS Quantum Dots with Adjustable Fluorescence Wavelength[J]. Optoelectronic Technology, 2021, 41(1): 27 Copy Citation Text show less

    Abstract

    InP/ZnS quantum dots (QDs) with excellent and nontoxic fluorescence properties were prepared by a thermal-injection method in aqueous solution, using tris (dimethylamino) phosphine as phosphine source and indium chloride as indium source. The experimental results showed that the InP/ZnS QDs with a spherical shape belong to sphalerite structure when the molar ratio of reactants was nP3-∶nIn3+=5∶1 and ZnS reaction time was 60 min. The fluorescence spectra of InP/ZnS QDs was adjustable in the range of 460 nm~620 nm. The full width at half maximum (FWHM) of InP/ZnS QDs with blue, green and red band were about 52 nm, 52 nm and 59 nm, respectively, and the average particle sizes were 3.05 nm, 3.32 nm and 3.44 nm, respectively. The fluorescence lifetime were 59.41 ns, 61.44 ns and 68.08 ns, respectively. In addition, the patterned InP/ZnS quantum dots photoresist (QDPR) film was prepared by the laser-assisted route. With the assistance of blue OLED and 5.5 pairs distributed Bragg reflector (DBR) structures, the CCE of color conversion based InP/ZnS QDPR film could reach 20.9% and the color coordinate could change from (0.22, 0.30) to (0.29, 0.63). Based on these results, InP/ZnS QDPR film is potentially useful for the fabrication of light emitting devices in the fields of lighting and display.
    Shiyao CHEN, Peiqi CHEN, Yalian WENG, Yan WU, Chaoxing WU, Xiongtu ZHOU, Yongai ZHANG, Tailiang GUO. Study on Fabrication and Color Conversion of InP/ZnS Quantum Dots with Adjustable Fluorescence Wavelength[J]. Optoelectronic Technology, 2021, 41(1): 27
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