4.7 Article

Encapsulating Organic Dyes in Metal-Organic Frameworks for Color-Tunable and High-Efficiency White-Light-Emitting Properties

期刊

INORGANIC CHEMISTRY
卷 61, 期 51, 页码 21107-21114

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.inorgchem.2c03736

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资金

  1. National Natural Science Foundation of China [21671119, 21971143]
  2. Distinguished Youth Foundation of Hubei province [2020CFA092]
  3. 111 Project [DT20015]
  4. Program for Innovative Teams of Outstanding Young and Middle-aged Researchers in the Higher Education Institutions of Hubei Province [T201904]
  5. Hubei Key Laboratory of Processing and Application of Catalytic materials [202122204]
  6. City University of Hong Kong [9380117, 7005620, 7020040]
  7. Hong Kong Institute for Advanced Study, City University of Hong Kong, Hong Kong, P. R. China
  8. State Key Laboratory of Supramolecular Structure and Materials, Jilin University [sklssm202233]

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The study prepared a series of single-phase dyes@In-MOF phosphors using two different methods and found the significance of the in-situ process, which increased dye loading and quantum efficiency while decreasing dye leakage. The fabricated WLED using this method showed high quantum yield, luminous efficacy, color rendering index, and good color quality.
The design of white-light phosphor is highly desirable for practical applications in SSL (solid-state lighting) and its related fields. Dye-loaded metal-organic frameworks (MOFs) have been widely demonstrated as one type of promising down conversion materials for WLEDs (white-light-emitting diodes), but two issues (dye leakage and inadequate quantum efficiency) require to be addressed before possible applications. Here, a series of single-phase dyes@In-MOF phosphors have been prepared in two different ways: the in-situ process and soaking method. The study of these dyes@In-MOF phosphors confirms the importance of this in-situ process that could effectively increase dye loading and quantum efficiency and greatly decrease dye leakage. As a result, a perfect WLED, fabricated using the in-situ-synthesized (AF/RhB@In-MOF)-3 (AF: Acriflavine; RhB: Rhodamine B) and 450 nm blue LED chip, exhibited a very high quantum yield (QY, up to 42.27%), a high luminous efficacy (LE) of 50.75 lm/W, a high color rendering index (CRI) of 91.2, and nearly identical Commission International ed'Eclairage (CIE) coordinates (0.33,0.31), indicating the potential application of the dye-loaded MOFs with good color quality in smart white LEDs.

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