He Zeping, Sun Boning, Lu Hui, Sun Xidi, Xu Zhangsheng, Liang Yegang, Lu Qiuchun, Yu Yang, Hu Kaiyu, Poddar Swapnadeep, Wu Wenqiang, Gao Wenchao, Han Xun, Fan Zhiyong, Pan Caofeng
CAS Center for Excellence in Nanoscience, Beijing Key Laboratory of Micro-nano Energy and Sensor, Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Sciences, Beijing 100083, P. R. China.
School of Nanoscience and Technology, University of Chinese Academy of Sciences, Beijing 100049, P. R. China.
Sci Adv. 2025 Sep 5;11(36):eadw7826. doi: 10.1126/sciadv.adw7826. Epub 2025 Sep 3.
The human visual system's real-time focus-tunable imaging capability has inspired curved imaging system development. However, curved image sensors mimicking the human retina typically lack tunable curvature to match the curved Petzval surface throughout the focus-tunable range. Here, we propose a focus-tunable real-time curved imaging system based on a tunable-curvature perovskite curved image sensor. Using parylene C film for waterproofing and encapsulation, the ultrathin perovskite curved image sensor with the hierarchical mesh design is demonstrated, which conforms to spherical surfaces of different radii while maintaining mechanical stability during deformation. The image sensor exhibits low detection limit (10 nanowatts per square centimeter) and long-term stable dynamic photoresponse. Combining the image sensor with a tunable lens achieves clear images at different distances via simultaneously adjusting both sensor and lens radii. Furthermore, through integrating image sensor with a readout matrix and wireless data collection component, the real-time imaging system is demonstrated with real-time focus-tunable imaging capabilities.
人类视觉系统的实时焦点可调成像能力激发了曲面成像系统的发展。然而,模仿人类视网膜的曲面图像传感器通常缺乏可调曲率,无法在整个焦点可调范围内与曲面佩兹伐面相匹配。在此,我们提出了一种基于可调曲率钙钛矿曲面图像传感器的焦点可调实时曲面成像系统。使用聚对二甲苯C膜进行防水和封装,展示了具有分层网格设计的超薄钙钛矿曲面图像传感器,该传感器可贴合不同半径的球面,同时在变形过程中保持机械稳定性。该图像传感器具有低检测限(每平方厘米10纳瓦)和长期稳定的动态光响应。将图像传感器与可调透镜相结合,通过同时调整传感器和透镜半径,可在不同距离获得清晰图像。此外,通过将图像传感器与读出矩阵和无线数据采集组件集成,展示了具有实时焦点可调成像能力的实时成像系统。