Lian Linyuan, Zhang Peng, Liang Guijie, Wang Song, Wang Xi, Wang Ya, Zhang Xiuwen, Gao Jianbo, Zhang Daoli, Gao Liang, Song Haisheng, Chen Rong, Lan Xinzheng, Liang Wenxi, Niu Guangda, Tang Jiang, Zhang Jianbing
School of Optical and Electronic Information, Huazhong University of Science and Technology, 1037 Luoyu Road, Wuhan, Hubei 430074, China.
College of Physics and Optoelectronic Engineering, Shenzhen University, Shenzhen 518060, China.
ACS Appl Mater Interfaces. 2021 May 19;13(19):22749-22756. doi: 10.1021/acsami.1c03881. Epub 2021 May 4.
Broad-band white-light emissions from organic-inorganic lead halide hybrids have attracted considerable attention in energy-saving solid-state lighting (SSL) applications. However, the toxicity of lead in these hybrids hinders their commercial prospects, and the low photoluminescence quantum yields (PLQYs) cannot meet the requirements for efficient lighting. Here, we report a highly efficient dual-band white-light emission from organic copper iodide, (CHN)CuI, which exhibits a high PLQY of 54.3% and excellent air stability. The single-crystalline (CHN)CuI possesses a unique zero-dimensional (0D) structure, in which the isolated [CuI] dimers are periodically embedded in the wide band gap organic framework of CHN. This perfect 0D structure can cause significant quantum confinement and strong electron-phonon coupling, which contributes to efficient emissions from self-trapped excitons (STEs). Photophysical studies revealed the presence of two self-trapped emitting states in [CuI] dimers, whose populations are highly sensitive to the temperature that governs the molecular environment for [CuI] dimers and the thermal activation energy of STEs. An ultraviolet (UV) excited white light-emitting diode fabricated using this single-phase white-light emitter exhibits a high color rendering index (CRI) of 78. The new material provides a promising emitter, having a high PLQY and a high CRI simultaneously, for SSL and display applications.
有机-无机卤化铅杂化物的宽带白光发射在节能固态照明(SSL)应用中引起了相当大的关注。然而,这些杂化物中铅的毒性阻碍了它们的商业前景,并且低光致发光量子产率(PLQYs)无法满足高效照明的要求。在此,我们报道了有机碘化铜(CHN)CuI的高效双波段白光发射,其具有54.3%的高PLQY和优异的空气稳定性。单晶(CHN)CuI具有独特的零维(0D)结构,其中孤立的[CuI]二聚体周期性地嵌入CHN的宽带隙有机框架中。这种完美的0D结构会导致显著的量子限制和强电子-声子耦合,这有助于自陷激子(STE)的高效发射。光物理研究表明[CuI]二聚体中存在两种自陷发射态,其数量对控制[CuI]二聚体分子环境的温度和STE的热活化能高度敏感。使用这种单相白光发射体制备的紫外(UV)激发白光发光二极管具有78的高显色指数(CRI)。这种新材料为SSL和显示应用提供了一种有前景的发射体,同时具有高PLQY和高CRI。