Bai Tianxinyu, Wang Shenwei, Bai Liyuan, Zhang Kexin, Chu Chunyang, Yi Lixin
Institute of Optoelectronic Technology, Beijing Jiaotong University, Beijing, 100044, China.
Nanoscale Res Lett. 2022 Aug 2;17(1):69. doi: 10.1186/s11671-022-03708-1.
The all-inorganic lead halide perovskite has become a very promising optoelectronic material due to its excellent optical and electrical properties. Device performances are currently hindered by crystallinity of the films and environmental stability. Here, we adopted dual-source co-evaporation method to prepare CsPbBr films. By adjusting and controlling the co-evaporation ratio and substrate temperature, we obtained CsPbBr films with large grain sizes and uniform morphology. Films with smooth surfaces and large grains exhibit properties such as efficient photon capture, fast carrier transport, and suppressed ion migration. Therefore, in this paper, by refining the annealing conditions, the effects of annealing temperature and time on the films were studied in detail. The CsPbBr films were annealed under suitable annealing temperature and time in ambient air, and films with high quality and crystallinity and average grain size up to ~ 2.5 μm could maintain stability in ambient air for 130 days. The corresponding LEDs show the full width at half maximum (FWHM) of the green EL spectrum is as narrow as 18 nm, and the devices have a low turn-on voltage V ~ 3 V and can work continuously for 12 h in ambient air.
全无机铅卤化物钙钛矿因其优异的光学和电学性能,已成为一种非常有前景的光电子材料。目前,器件性能受到薄膜结晶度和环境稳定性的限制。在此,我们采用双源共蒸发法制备CsPbBr薄膜。通过调节和控制共蒸发比例和衬底温度,我们获得了具有大晶粒尺寸和均匀形貌的CsPbBr薄膜。表面光滑且晶粒较大的薄膜表现出高效光子捕获、快速载流子传输和抑制离子迁移等特性。因此,本文通过优化退火条件,详细研究了退火温度和时间对薄膜的影响。CsPbBr薄膜在环境空气中于合适的退火温度和时间下进行退火,具有高质量和结晶度且平均晶粒尺寸达2.5μm的薄膜在环境空气中可保持130天的稳定性。相应的发光二极管显示绿色电致发光光谱的半高宽窄至18nm,且器件的开启电压V3V较低,在环境空气中可连续工作12小时。