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通过局域激子复合实现用于下转换白光发光二极管的蓝色发射CsTmCl纳米晶体的胶体合成

Colloidal Synthesis of Blue-Emitting CsTmCl Nanocrystals via Localized Excitonic Recombination for Down-Conversion White Light-Emitting Diodes.

作者信息

Wang Meng, Chen Xu, Zhang Fei, Ma Zhuangzhuang, Ji Xinzhen, Cheng Shanshan, Pan Gencai, Wu Di, Li Xin-Jian, Zhang Yu, Shan Chongxin, Shi Zhifeng

机构信息

Key Laboratory of Materials Physics of Ministry of Education, School of Physics, Zhengzhou University, Daxue Road 75, Zhengzhou 450052, China.

School of Physics and Electronics, Henan University, Kaifeng 475004, China.

出版信息

ACS Nano. 2024 Nov 5;18(44):30421-30432. doi: 10.1021/acsnano.4c07641. Epub 2024 Oct 25.

Abstract

Lead-halide perovskite nanocrystals (NCs) have gained significant attention for their promising applications in lighting and display technologies. However, blue-emitting NCs have struggled to match the high efficiency of their red and green counterparts. Moreover, many reported blue-emitting perovskite NCs contain heavy metal lead (Pb), which poses risks to human health and the environment. In this study, we synthesized rare-earth-based CsTmCl NCs via the hot injection method, which exhibit a broadband blue emission at 440 nm. Combined experimental and theoretical studies indicate that the broadband emission in CsTmCl arises from self-trapped excitons due to the excited-state structural distortion of the [TmCl] cluster. Furthermore, the ultrafast dynamics of charge carriers were analyzed using time-resolved photoluminescence and transient absorption measurements. Encouraged by the remarkable thermal, light, and water stabilities of CsTmCl NCs, as evidenced by experimental and theoretical results, a white light-emitting diode was further designed and fabricated using the CsTmCl NCs as the color converter. The device exhibits outstanding performance, achieving a long half-lifetime of 336 h and a large color-rendering index of 87.0. Combining eco-friendly features and a facile synthesis method, the rare-earth-based CsTmCl NCs mark a significant breakthrough as a reliable blue emitter, showcasing their future potential in lighting and display applications.

摘要

卤化铅钙钛矿纳米晶体(NCs)因其在照明和显示技术中的潜在应用而备受关注。然而,蓝色发光的NCs一直难以达到其红色和绿色对应物的高效率。此外,许多报道的蓝色发光钙钛矿NCs含有重金属铅(Pb),这对人类健康和环境构成风险。在本研究中,我们通过热注入法合成了稀土基CsTmCl NCs,其在440 nm处呈现宽带蓝光发射。结合实验和理论研究表明,CsTmCl中的宽带发射源于[TmCl]簇的激发态结构畸变导致的自陷激子。此外,利用时间分辨光致发光和瞬态吸收测量分析了载流子的超快动力学。实验和理论结果证明了CsTmCl NCs具有显著的热、光和水稳定性,在此鼓舞下,我们进一步设计并制造了一种以CsTmCl NCs作为颜色转换器的白色发光二极管。该器件表现出优异的性能,实现了336小时的长半衰期和87.0的大显色指数。基于稀土的CsTmCl NCs兼具环保特性和简便的合成方法,作为一种可靠的蓝色发光体取得了重大突破,展示了其在照明和显示应用中的未来潜力。

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