Gao Yilin, Han Xinxin, Wei Qilin, Chang Tong, Chen Yuanjie, Zou Bingsuo, Cao Sheng, Zhao Jialong, Zeng Ruosheng
School of Physical Science and Technology, MOE Key Laboratory of New Processing Technology for Non-ferrous Metals and Materials, Guangxi Key Laboratory of Processing for Non-ferrous Metals and Featured Materials, Guangxi University, Nanning 530004, China.
J Phys Chem Lett. 2022 Aug 11;13(31):7177-7184. doi: 10.1021/acs.jpclett.2c01996. Epub 2022 Jul 29.
Low-dimensional metal halides are attractive for applications in photodetectors, solid-state lighting, and solar cells, but poor stability is an obstacle that must be overcome in commercial applications. Herein, we successfully synthesized a Ruddlesden-Popper (RP)-phased perovskite Mn:CsCdCl with high photoluminescence quantum yield (PLQY) and outstanding thermal and environmental stability by a solvothermal method. The pristine sample CsCdCl exhibits a weak cyan broad emission centered at 510 nm with a low PLQY of ∼4%. Once Mn ions are introduced into the host lattice, a bright orange emission peaking at 580 nm with a high PLQY of ∼74% was achieved, which is attributed to the efficient energy transfer from the host to Mn ions and thus results in the T → A radiation transition of Mn ions. The photoluminescence (PL) intensity and environmental stability of Mn:CsCdCl can be further improved through A-site Rb alloying. Finally, an orange LED with outstanding color stability was fabricated on the basis of the Mn:CsCdCl. Our work successfully elucidates that dopant plays an integral role in tailoring optical properties.
低维金属卤化物在光电探测器、固态照明和太阳能电池等应用中具有吸引力,但稳定性差是其在商业应用中必须克服的障碍。在此,我们通过溶剂热法成功合成了具有高光致发光量子产率(PLQY)以及出色热稳定性和环境稳定性的Ruddlesden-Popper(RP)相钙钛矿Mn:CsCdCl。原始样品CsCdCl在510 nm处呈现出以弱青色宽带发射为主,其PLQY较低,约为4%。一旦将Mn离子引入主体晶格,就实现了在580 nm处峰值的明亮橙色发射,其PLQY较高,约为74%,这归因于从主体到Mn离子的有效能量转移,从而导致Mn离子的T→A辐射跃迁。通过A位Rb合金化可以进一步提高Mn:CsCdCl的光致发光(PL)强度和环境稳定性。最后,基于Mn:CsCdCl制备了具有出色颜色稳定性的橙色发光二极管。我们的工作成功阐明了掺杂剂在调节光学性质中起着不可或缺的作用。