发光
材料科学
光致发光
显色指数
荧光粉
光电子学
量子产额
单独一对
发光效率
纳米技术
光学
分子
化学
有机化学
图层(电子)
物理
荧光
作者
Noolu Srinivasa Manikanta Viswanath,Tuhin Samanta,Yeongjun Yoon,Sung Woo Jang,Kyeounghak Kim,Won Bin Im
标识
DOI:10.1002/adom.202302565
摘要
Abstract Zero‐dimensional (0D) 5s 2 ‐metal halide (MH) materials offer potential for use in solid‐state lighting, optical thermography, and scintillation applications. The organic components of most highly luminescent materials are inherently unstable under moisture and thermal stress, which restricts their practical use in advanced applications. Hence, highly luminescent and stable inorganic luminescent materials are required. In this work, to the best of current knowledge, a 0D completely inorganic luminescent member of K 2 SbCl 5 that exhibits orange emission at 610 nm with an 80% photoluminescence quantum yield (PLQY) is reported for the first time. Density functional theory calculations reveal that the [SbCl 5 ] 2‐ square pyramidal units are the only optically active emission centers in K 2 SbCl 5 . The white light‐emitting device utilizing K 2 SbCl 5 demonstrates impressive performance metrics, boasting a substantial color rendering index (CRI) of 94 and an exceptional luminous efficacy of 118.1 lm W −1 . Hence, this isolated [SbCl 5 ] 2− square pyramidal environment serves as a design principle for the development of highly efficient inorganic Sb 3+ ‐based luminescent materials for future optoelectronic applications.
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