材料科学
超短脉冲
钙钛矿(结构)
光电子学
二极管
对偶(语法数字)
多波段设备
纳米技术
光学
化学工程
电气工程
激光器
艺术
物理
文学类
天线(收音机)
工程类
作者
Can Zou,Dongfang Yu,Miaoyu Lin,Benben Shen,Yu Peng,Yichu Zheng,Hua Gui Yang,Yu Hou,Shuang Yang
标识
DOI:10.1002/adfm.202316430
摘要
Abstract Multispectral imaging that captures multiple band information for effective environmental or object identification is of great interest in medical, vision, military, and space applications. Monolithic stacked detectors based on epitaxial electronics have been the principal option for infrared dual‐band imagers. However, the integration of these single‐band units would inevitably lead to performance reduction, high fabrication cost, and low reproducibility yield, which limits the widespread application of such technology. Here, a high‐throughput blade coating process is demonstrated to fabricate monolithic double‐perovskite‐layer photodiodes with preferential crystallographic morphology and high reproductivity. The device delivers electrically switchable dual‐band response with a dark current below 10 −9 mA cm −2 , a selective spectral response of 300–1100 nm, and bandwidths of 16.5/>20 MHz for two distinct bands. Furthermore, such device configuration can concurrently capture dual‐color spectral information under an AC‐driven mode, enabling the complementary dual‐spectral imaging for bioimaging and environmental monitoring.
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