A 405 nm photodetector based on the CsPbBr3-CsPb2Br5 compound thin film

Qingshuang Xie, Xing Liu, Lin Guan
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Abstract

This work reported a 405 nm photodetector based on the thermal evaporated CsPbBr3-CsPb2Br5 compound thin film. The post-annealing process of the CsPbBr3-CsPb2Br5 compound thin film prepared by thermal evaporation method has been improved in this work. To enhance the crystallization and photoresponse properties of the thin films, dimethyl sulfoxide (DMSO) steam was used in post-annealing process, instead of using the previous way that increased the annealing temperature. The CsPbBr3-CsPb2Br5 compound powder was deposited directly on surface glass substrate by thermal evaporation to form CsPbBr3-CsPb2Br5 compound thin film. The thin films were post-annealed at 150 oC for 15 min to crystallize. The DMSO liquid was dropped on the substrate, and then the liquid would be evaporated completely to become DMSO steam during 150 oC post-annealing. The DMSO steam would cover the thin film completely to help the crystallization. Finally, the gold electrodes were deposited on surface of thin films with a conductive channel of 1 mm * 100 µm. Results showed that the crystalline quality of the thin film after DMSO steam annealing was greatly improved compared with that of thin film without DMSO steam annealing. The energy gap was between 2.355 eV and 2.293 eV, which was similar to the previous report. In addition, under 405 nm excitation, the photocurrent of the thin film annealed in DMSO steam showed the rapid response (35 ms), good light radiation power dependence of the photocurrent and the improved responsivity. Especially, the responsivity at 3 V bias of the thin film annealed in DMSO steam increased to 1.5 times that of the thin film without DMSO steam annealing and even 4.5 times that of as-deposited film. A 405 nm photodetector based on the thermal evaporated CsPbBr3-CsPb2Br5 compound thin film was prepared successfully. The newest report has improved the preparation process of CsPbBr3-CsPb2Br5 compound thin films, where low annealing temperature with the DMSO steam assisted post-annealing process was used. The thin film annealed in DMSO steam possesses high crystalline quality and enhanced photoresponse performances, compared with thin film without DMSO steam annealing.
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基于CsPbBr3-CsPb2Br5复合薄膜的405 nm光电探测器
本文报道了一种基于热蒸发CsPbBr3-CsPb2Br5复合薄膜的405 nm光电探测器。本文改进了热蒸发法制备CsPbBr3-CsPb2Br5复合薄膜的后退火工艺。为了提高薄膜的结晶和光响应性能,采用二甲基亚砜(DMSO)蒸汽进行后退火,而不是采用以往提高退火温度的方法。将CsPbBr3-CsPb2Br5复合粉末通过热蒸发直接沉积在玻璃基板表面,形成CsPbBr3-CsPb2Br5复合薄膜。薄膜在150℃下退火15 min结晶。将DMSO液体滴在衬底上,在150℃退火后将液体完全蒸发成为DMSO蒸汽。二甲基亚砜蒸汽会完全覆盖薄膜以帮助结晶。最后,将金电极沉积在导电通道为1 mm * 100µm的薄膜表面。结果表明,经过DMSO蒸汽退火的薄膜的结晶质量比未经过DMSO蒸汽退火的薄膜有很大的提高。能差在2.355 eV和2.293 eV之间,与之前的报道相似。此外,在405 nm激发下,DMSO蒸汽中退火薄膜的光电流响应速度快(35 ms),光电流对光辐射功率的依赖性好,响应性提高。特别是在DMSO蒸汽中退火的薄膜在3v偏置下的响应率提高到未退火薄膜的1.5倍,甚至达到沉积薄膜的4.5倍。成功制备了基于热蒸发CsPbBr3-CsPb2Br5复合薄膜的405 nm光电探测器。最新报道改进了CsPbBr3-CsPb2Br5复合薄膜的制备工艺,采用DMSO蒸汽辅助后退火的低退火温度工艺。与未经DMSO蒸汽退火的薄膜相比,经DMSO蒸汽退火的薄膜具有较高的结晶质量和光响应性能。
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