Liu Peng, Gu Chunling, Liao Qing
School of Materials Science and Engineering & Guangxi Key Laboratory of Information Materials, Guilin University of Electronic Technology, Guilin 541004, China.
Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, China.
ACS Omega. 2021 Dec 2;6(49):34021-34026. doi: 10.1021/acsomega.1c05364. eCollection 2021 Dec 14.
Electrically tunable optical devices that allow for modulation and detection of the optical signals would be extremely beneficial for the next photonic and electronic technologies. Perovskite materials as an emerging excitonic one provide promising platforms because they offer excitons manipulated by an external electrical field and efficient coupling to light. However, so far, electrically modulated switches based on perovskite amplified spontaneous emission (ASE) still remain unexplored. Here, we prepared perovskite films on indium tin oxide substrates by a spin-coating method and characterized their ASE behaviors. Based on it, we designed and fabricated electrically switchable ASE devices of perovskite film based on a light-emitting diode device configuration. Under the externally applied current, this device exhibits good controllable optoelectronic switching behaviors. Furthermore, this photoelectric response can be modulated by the different current densities. Our strategy for electrically switchable perovskite ASE will promote integrated applications in optoelectronic devices and provide valuable experience for the development of electrically pumped perovskite lasers.
能够对光信号进行调制和检测的电可调谐光学器件对下一代光子和电子技术极为有益。钙钛矿材料作为一种新兴的激子材料提供了有前景的平台,因为它们能提供可由外部电场操控的激子并能与光进行高效耦合。然而,到目前为止,基于钙钛矿放大自发辐射(ASE)的电调制开关仍未被探索。在此,我们通过旋涂法在氧化铟锡衬底上制备了钙钛矿薄膜,并对其ASE行为进行了表征。基于此,我们基于发光二极管器件结构设计并制造了钙钛矿薄膜的电可切换ASE器件。在外部施加电流时,该器件表现出良好的可控光电开关行为。此外,这种光电响应可通过不同的电流密度进行调制。我们用于电可切换钙钛矿ASE的策略将推动其在光电器件中的集成应用,并为电泵浦钙钛矿激光器的发展提供宝贵经验。