Wang Yu-Yin, Hu Xiu-Rui, Feng Ying, Wang Yue, Tian Yu-Meng, Qu Hao, Feng Li-Juan, Lei Xiao-Wu, Yue Cheng-Yang
School of Chemistry, Chemical Engineering and Materials, Jining University, Qufu 273155, Shandong, China.
Inorg Chem. 2023 Sep 25;62(38):15711-15718. doi: 10.1021/acs.inorgchem.3c02313. Epub 2023 Sep 11.
Exploring highly efficient blue-emissive lead-free halide materials is a significant and challenging objective in the study of luminescent materials. This study reports the synthesis of a new zero-dimensional (0D) hybrid zinc halide of (CYP = 1-cyclohexylpiperazine) containing an isolated [ZnBr] tetrahedron. exhibits strong blue light emission with a high photoluminescence quantum yield (PLQY) of 79.22%, surpassing all previously reported 0D zinc halide counterparts. According to the theoretical and experimental studies, the blue light emission is attributed to intrinsic self-trapped excitons resulting from strong electron-phonon coupling and structural deformation. Importantly, demonstrates excellent structural and luminescence stability toward high temperatures (180 °C) over at least half a month. High luminescence efficiency and stability enable to be an efficient blue phosphor to fabricate white light-emitting diodes (LEDs), which produces high-quality white light with a color rendering index (CRI) of 93.1 and a correlated color temperature (CCT) of 5304 K, closely resembling natural sunlight. This white LED also exhibits consistent performance and stability across different drive currents, suggesting the potential for high-power optoelectronic applications. Overall, this study paves the way for the utilization of 0D hybrid halides in advanced solid-state lighting applications.
探索高效的蓝色发光无铅卤化物材料是发光材料研究中的一个重要且具有挑战性的目标。本研究报道了一种新型零维(0D)杂化卤化锌(CYP = 1-环己基哌嗪)的合成,其包含一个孤立的[ZnBr]四面体。该化合物表现出强烈的蓝光发射,光致发光量子产率(PLQY)高达79.22%,超过了所有先前报道的0D卤化锌同类物。根据理论和实验研究,蓝光发射归因于强电子-声子耦合和结构变形导致的本征自陷激子。重要的是,该化合物在至少半个月的时间内对高温(180°C)表现出优异的结构和发光稳定性。高发光效率和稳定性使该化合物能够成为一种高效的蓝色磷光体用于制造白光发光二极管(LED),其产生的高质量白光的显色指数(CRI)为93.1,相关色温(CCT)为5304 K,与自然阳光极为相似。这种白色LED在不同驱动电流下也表现出一致的性能和稳定性,表明其在高功率光电应用中的潜力。总体而言,本研究为0D杂化卤化物在先进固态照明应用中的利用铺平了道路。