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A solution-processed ternary copper halide thin films for air-stable and deep-ultraviolet-sensitive photodetector

机译:一个solution-processed三元卤化铜薄电影air-stable和deep-ultraviolet-sensitive光电探测器

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Recently, the newly emerging lead-halide perovskites have received tremendous attention in the photodetection field because of their intrinsic large light absorption and high well-balanced carrier transport characteristics. Unfortunately, the issue of instability and the existence of toxic lead cations have greatly restricted their practical applications and future commercialization. Furthermore, the previous studies on perovskite photodetectors mainly operate in visible and near-infrared light region, and there are practically no relevant reports aimed at the deep-ultraviolet (DUV) region. In this study, an air-stable and DUV-sensitive photoconductive detector was demonstrated with a solution-processed ternary copper halides Cs(3)Cu(2)I(5)thin films as the light absorber. The proposed photodetector is very sensitive to wavelengths of light below 320 nm and unresponsive to the visible light. Because of the high material integrity and large surface coverage of the Cs(3)Cu(2)I(5)thin films, the detector presents an outstanding photodetection performance with a photoresponsivity of similar to 17.8 A W-1, specific detectivity of 1.12 x 10(12)Jones, and fast response speed of 465/897 mu s, superior to previously reported DUV photodetectors based on other material systems. Unlike traditional lead-halide perovskites, the lead-free Cs(3)Cu(2)I(5)shows remarkable stability against heat, UV light, and environmental oxygen/moisture. Thus, the unsealed photodetector demonstrates good operation stability for 11 h of continuous running in open air. Even after 80-day storage in ambient air, its photodetection capability can nearly be maintained. The results suggest that non-toxic Cs(3)Cu(2)I(5)could be a potential candidate for stable and environment friendly DUV detectors, enabling an assembly of optoelectronic systems in the future.
机译:最近,新兴的卤化铅钙钛矿收到了极大的关注因为他们的光电探测领域内在的光吸收和高均衡的载波传输特性。不幸的是,不稳定的问题存在的有毒铅阳离子大大他们的实际应用和限制未来的商业化。之前的研究在钙钛矿光电探测器主要在可见光和近红外光地区,几乎没有相关性报告针对deep-ultraviolet (DUV)地区。DUV-sensitive光电导检测器是证明solution-processed三元铜卤化物Cs(3)铜(2)我(5)薄膜光吸收器。非常敏感的波长的光低于320nm和反应迟钝的可见光。高材料的完整性和大的表面Cs的报道(3)铜(2)我(5)薄膜探测器提供了一个优秀的光电探测性能的photoresponsivity相似17.8 w1,特定的探测能力的1.12倍10(12)琼斯,快速响应速度的465/897μs,优于先前DUV报道基于其他材料的光电探测器系统。与传统卤化铅钙钛矿,无铅Cs(3)铜(2)我(5)显示了非凡的对热稳定,紫外线和环境氧/水分。光电探测器显示良好的操作11 h(连续稳定运行在开放空气中。它的光电探测能力几乎可以维护。Cs(3)铜(2)我(5)可能是一个潜在的候选人稳定和环境友好DUV探测器,使光电系统的组装未来。

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