Although perovskite X-ray detectors have revealed promising properties, their dark currents are usually hundreds of times larger than the practical requirements. Here, we report a detector architecture with a unique shunting electrode working as a blanking unit to suppress dark current, and it theoretically can be reduced to zero. We experimentally fabricate the dark-current-shunting X-ray detector, which exhibits a record-low dark current of 51.1âfA at 5âVâmm(-1), a detection limit of 7.84ânGy(air)âs(-1), and a sensitivity of 1.3âÃâ10(4)âμCâGy(air)(-1)âcm(-2). The signal-to-noise ratio of our polycrystalline perovskite-based detector is even outperforming many previously reported state-of-the-art single crystal-based X-ray detectors by serval orders of magnitude. Finally, the proof-of-concept X-ray imaging of a 64âÃâ64 pixels dark-current-shunting detector array is successfully demonstrated. This work provides a device strategy to fundamentally reduce dark current and enhance the signal-to-noise ratio of X-ray detectors and photodetectors in general.
Realizing nearly-zero dark current and ultrahigh signal-to-noise ratio perovskite X-ray detector and image array by dark-current-shunting strategy.
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作者:Jin Peng, Tang Yingjie, Li Dingwei, Wang Yan, Ran Peng, Zhou Chuanyu, Yuan Ye, Zhu Wenjuan, Liu Tianyu, Liang Kun, Kuang Cuifang, Liu Xu, Zhu Bowen, Yang Yang Michael
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2023 | 起止号: | 2023 Feb 6; 14(1):626 |
| doi: | 10.1038/s41467-023-36313-6 | ||
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