4.8 Article

Implementation of High-Quality Warm-White Light-Emitting Diodes by a Model-Experimental Feedback Approach Using Quantum Dot-Salt Mixed Crystals

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 7, 期 41, 页码 23364-23371

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.5b08377

关键词

white LEDs; color conversion; mixed crystals; quantum dots; composites; colloidal nanocrystals

资金

  1. EU-FP7 Network of Excellence Nanophotonics for Energy Efficiency (N4E)
  2. BMBF [TUR 09/001]
  3. TUBITAK [112E183]
  4. TUBITAK EEEAG [109E002, 109E004, 110E010, 110E217, 114E326]
  5. A*STAR of Singapore
  6. ESF-EURYI
  7. TUBA-GEBIP
  8. TUBITAK BIDEB
  9. [NRF-RF-2009-09]
  10. [NRF-CRP-6-2010-02]

向作者/读者索取更多资源

In this work, a model-experimental feedback approach is developed and applied to fabricate high-quality, warm-white light-emitting diodes based on quantum dots (gDs) as color-conversion materials. Owing to their unique chemical and physical properties, QDs offer huge potential for lighting applications. Nevertheless, both emission stability and processability of the QDs are limited upon usage from solution. Incorporating them into a solid ionic matrix overcomes both of these drawbacks, while preserving the initial optical properties. Here borax (Na2B4O7 center dot 10H(2)O) is used as a host matrix because of its lower solubility and thereby reduced ionic strength in water in comparison with NaCl. This guarantees the stability of high-quality CdSe/ZnS QDs in the aqueous phase during crystallization and results in a 3.4 times higher loading amount of QDs within the borax crystals compared to NaCl. All steps from the synthesis via mixed crystal preparation to the warm-white LED preparation are verified by applying the model-experimental feedback, in which experimental data and numerical results provide feedback to each other recursively. These measures are taken to ensure a high luminous efficacy of optical radiation (LER) and a high color rendering index (CRI) of the final device as well as a correlated color temperature (CCT) comparable to an incandescent bulb. By doing so, a warm-white LED with a LER of 341 lm/W-opt a CCT of 2720 K and a CRI of 91.1 is produced. Finally, we show that the emission stability of the QDs within the borax crystals on LEDs driven at high currents is significantly improved. These findings indicate that the proposed warm-white light-emitting diodes based on QDs-in-borax hold great promise for quality lighting.

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