Zhang Deng-Gui, Jian Liang-Yu, Tseng Zong-Liang, Cheng Hsin-Ming, Lin Ja-Hon
Department of Electro-Optical Engineering, National Taipei University of Technology, Taipei 10608, Taiwan.
Department of Electronic Engineering and Organic Electronics Research Center, Ming Chi University of Technology, New Taipei City 243303, Taiwan.
Nanoscale. 2021 Feb 11;13(5):3246-3251. doi: 10.1039/d0nr08326g.
Random lasing from CsPbBr3 quantum dots (QDs) prepared by the hot injection method under ambient conditions has been investigated. The lasing characteristics and performance were related to the thickness and aggregation of the QDs film on a glass substrate. The perovskite emitted linear polarized ASE from the edge of the prepared sample as pump energy above a certain threshold, owing to the gain guiding effect. In comparison to the Q-switched Nd:YAG laser, the prepared perovskite random lasers produced a speckle reduced image with a lower contrast of around 0.051. Through temperature-dependent measurements under a surface normal emission configuration, the photon energy of ASE revealed a red shift as the temperature increased and showed a larger characteristic temperature of around 230 K. This result illustrates that the perovskite prepared under ambient conditions can be a promising material for a microcavity laser in the near future.
对通过热注入法在环境条件下制备的CsPbBr3量子点(QDs)的随机激光发射进行了研究。激光特性和性能与玻璃基板上量子点薄膜的厚度和聚集有关。由于增益引导效应,当泵浦能量高于某个阈值时,钙钛矿从制备样品的边缘发射线性偏振的受激自发辐射(ASE)。与调Q Nd:YAG激光器相比,制备的钙钛矿随机激光器产生了对比度约为0.051的低对比度散斑减少图像。通过在表面法向发射配置下进行的温度相关测量,ASE的光子能量随着温度升高而出现红移,并显示出约230 K的较大特征温度。这一结果表明,在环境条件下制备的钙钛矿在不久的将来可能成为微腔激光器的一种有前途的材料。