Abstract Novel CsPbI <ce:inf loc='post'>3</ce:inf> QDs glass with chemical stability and optical properties
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Novel CsPbI 3 QDs glass with chemical stability and optical properties

机译:新型CSPBI 3 QDS玻璃,具有化学稳定性和光学性质

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AbstractBright and tunable photoluminescence properties for cesium lead halide (CsPbX3) quantum dots (QDs) hinder its application due to their easy degradation in humid and high temperature conditions. Here, we present a simple approach to fabricate a novel CsPbI3QDs in zinc borosilicate glass through a conventional melting–quenching technique. CsPbI3QDs glass exhibits high luminescent intensity, tunable narrow-band emission, including the same bandgap energies and emission spectra as CsPbI3QDs solution, but the quantum yield and decay time show a reduction for the structure defect and electron-hole consist in CsPbI3QDs glass. Moreover, different heat-treated temperature effect the luminescence of CsPbI3QDs glass. Absorption and photoluminescence spectra demonstrate that 540°C is the ideal heat-treated temperature for CsPbI3QDs glass. Consequently, this novel and stable CsPbI3QDs glass reveals the promising candidate for all-inorganic perovskite in display and solid-state warm lighting source.]]>
机译:<![cdata [ 抽象 铯铅卤化物的明亮和可调谐光致发光属性(cspbx 3 )量子点(QDS)妨碍其应用,因为它们在潮湿和高温条件下易于降解。在这里,我们通过传统的熔化淬火技术制造一种简单的方法来制造新的CSPBI 3 QDS。 CSPBI 3 QDS玻璃表现出高发光强度,可调窄带发射,包括与CSPBI 3 QDS解决方案,但量子产量和衰减时间显示了结构缺陷和电子孔的减少,包括CSPBI 3 QDS玻璃。此外,不同的热处理温度效果CSPBI 3 QDS玻璃的发光。吸收和光致发光光谱表明,540℃是CSPBI的理想热处理温度 3 QDS玻璃。因此,这部新颖且稳定的CSPBI 3 QDS玻璃揭示了显示和固态温暖灯光源的所有无机钙钛矿的有希望的候选者。 ]]>

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