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基于氨基酸稳定化的钙钛矿量子点实现低阈值随机激光

Amino-Mediated Anchoring Perovskite Quantum Dots for Stable and Low-Threshold Random Lasing.

机构信息

MIIT Key Laboratory of Advanced Display Materials and Devices, Institute of Optoelectronics and Nanomaterials, College of Materials Science and Engineering, Nanjing University of Science and Technology, Nanjing, 210094, China.

Division of Physics and Applied Physics, School of Physical and Mathematical Sciences, Nanyang Technological University, Singapore, 637371, Singapore.

出版信息

Adv Mater. 2017 Sep;29(36). doi: 10.1002/adma.201701185. Epub 2017 Jul 31.

Abstract

Halide perovskite quantum dots (Pe-QDs) have been considered as outstanding candidates for photodetector, light-emitting diode, and lasing applications, but these perspectives are being impeded by the severe stability, including both chemical and optical degradations. This study reports on amino-mediated anchoring Pe-QDs onto the surfaces of monodisperse silica to effectively depress the optical degradation of their photoluminescence (PL) and random lasing stabilities, hence achieving highly stable and low-threshold lasing. An amination-mediated nucleation and growth process is designed for the general and one-pot synthesis of Pe-QDs on the surfaces of silica spheres. The facile synthetic process, which can be finished within several minutes, insures scalable production. Surprisingly, almost no PL degradation is observed after 40 d storage under ambient conditions, even 80% PL intensity can be maintained after persistently illuminated by UV lamps for 108 h. Subsequently, extremely stable random lasing is achieved after storage for 2 months or over continuously optical pumping for 8 h. Such high PL and lasing stabilities originate from the isolation effects due to the effective anchoring, which separate the Pe-QDs from each other and inhibit the photoinduced regrowth and deterioration. This work will also open the window of perovskite-based multifunctional systems.

摘要

卤化物钙钛矿量子点(Pe-QDs)被认为是光电探测器、发光二极管和激光应用的优秀候选者,但由于严重的稳定性问题,包括化学和光学降解,这些应用受到了阻碍。本研究报告了通过氨基介导将 Pe-QDs 锚定在单分散二氧化硅表面上,从而有效地抑制其光致发光(PL)和随机激光稳定性的光学降解,从而实现了高稳定性和低阈值激光。设计了一种通过氨介导的成核和生长过程,在二氧化硅球表面上进行 Pe-QDs 的通用和一锅合成。该简便的合成过程可以在几分钟内完成,确保了可扩展性生产。令人惊讶的是,即使在紫外线灯持续照射 108 小时后,在环境条件下储存 40 天后仍几乎观察不到 PL 降解,甚至可以保持 80%的 PL 强度。随后,在储存 2 个月或连续光学泵浦 8 小时后,即可实现极其稳定的随机激光。这种高的 PL 和激光稳定性源于有效锚定的隔离效应,它将 Pe-QDs 彼此分离,并抑制光诱导的再生长和劣化。这项工作还将为基于钙钛矿的多功能系统开辟新的途径。

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