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Planar-integrated single-crystalline perovskite photodetectors

机译:平面集成单晶钙钛矿光电探测器

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摘要

Hybrid perovskites are promising semiconductors for optoelectronic applications. However, they suffer from morphological disorder that limits their optoelectronic properties and, ultimately, device performance. Recently, perovskite single crystals have been shown to overcome this problem and exhibit impressive improvements: low trap density, low intrinsic carrier concentration, high mobility, and long diffusion length that outperform perovskite-based thin films. These characteristics make the material ideal for realizing photodetection that is simultaneously fast and sensitive; unfortunately, these macroscopic single crystals cannot be grown on a planar substrate, curtailing their potential for optoelectronic integration. Here we produce large-area planar-integrated films made up of large perovskite single crystals. These crystalline films exhibit mobility and diffusion length comparable with those of single crystals. Using this technique, we produced a high-performance light detector showing high gain (above 104 electrons per photon) and high gain-bandwidth product (above 108 Hz) relative to other perovskite-based optical sensors.
机译:混合钙钛矿是用于光电子应用的有前途的半导体。但是,它们遭受形态紊乱的困扰,这限制了它们的光电性能,并最终限制了器件的性能。最近,钙钛矿单晶已被证明可以克服这一问题并取得令人印象深刻的改进:低陷阱密度,低固有载流子浓度,高迁移率和长扩散长度,优于钙钛矿基薄膜。这些特性使该材料成为实现快速,灵敏的光电检测的理想选择。不幸的是,这些宏观的单晶不能在平面衬底上生长,从而限制了其光电子集成的潜力。在这里,我们生产由大钙钛矿单晶组成的大面积平面集成膜。这些结晶膜显示出与单晶相当的迁移率和扩散长度。使用这种技术,我们生产了一种高性能的光探测器,相对于其他基于钙钛矿的光学传感器而言,它具有高增益(每个光子104个电子以上)和高增益带宽乘积(108 Hz以上)。

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