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Color tunable emission from Eu 3+ and Tm 3+ co-doped CsPbBr 3 quantum dot glass nanocomposites.

Erdinç ErolOrhan KıbrıslıMiray Çelikbilek ErsunduAli Erçin Ersundu
Published in: Physical chemistry chemical physics : PCCP (2022)
Cesium lead bromide (CsPbBr 3 ) quantum dots (QDs) have shown great potential in the field of luminescent materials owing to their superior optical and electrical properties. However, instability and lack of multicolor emissions resulting from the intrinsic nature of CsPbBr 3 QDs are still the major challenge for their commercialization. Herein, Eu 3+ and Tm 3+ co-doped CsPbBr 3 QD glass nanocomposites (GNCs) are successfully synthesized via traditional melt-quenching followed by a heat-treatment route to obtain tunable emission in a durable host material. Tm 3+ ions are doped to blue-shift the main emission peak of CsPbBr 3 QDs, while Eu 3+ ions are incorporated to compensate for the red deficiency. Accordingly, a tunable color emission spanning the entire visible spectrum is achieved from GNCs with a fixed composition. The incorporation of Eu 3+ and Tm 3+ ions promotes the crystallization of CsPbBr 3 QDs in the glass host resulting in ∼100% photoluminescence quantum yield (PLQY) using a dilution method. The selected glass host has also been proven to effectively protect CsPbBr 3 QDs against chemical, thermal and photo degradation. Interestingly, the selected Eu 3+ /Tm 3+ co-doped CsPbBr 3 QD GNC shows warm-white light with a low color temperature of 3692 K without utilizing any commercial phosphors. This indicates that the produced GNCs have the potential to be used as light convertor materials in multi-color LED or warm white LED applications due to their robust stability and extremely pure and tunable emission colors.
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