超短脉冲
宽带
光电探测器
瞬态(计算机编程)
物理
光学
频道(广播)
光通信
稳健性(进化)
计算机科学
水下
数据传输
波形
传输(电信)
瞬态响应
带宽(计算)
电极
波长
光电二极管
多路复用
爆炸物
水声通信
活动层
信号(编程语言)
灵敏度(控制系统)
光无线通信
光电子学
材料科学
信号处理
发射机
图层(电子)
光放大器
探测器
截止频率
光学滤波器
光开关
放大器
作者
Suryakant Singh,Hemraj Dahiya,Rakesh Suthar,Michio M. Matsushita,Kunio Awaga,Supravat Karak
标识
DOI:10.1021/acsaelm.5c02379
摘要
Secure optical communication requires photodetectors that are fast, broadband, bidirectional, and stable. Traditional devices often face issues like narrow spectral response, unidirectional operation, and poor durability. We present a bidirectional transient organic photodetector (T-OPD) for aerial and underwater self-powered applications, structured as ITO/PEDOT:PSS/Active layer/Ionic liquid gel (IL)/ITO. Both the top (ITO/IL) and the bottom electrodes (ITO/PEDOT:PSS) exhibited an average transparency of 80–85% across the entire UV–vis-NIR spectrum (400–940 nm), allowing the devices to operate bidirectionally. Using a blend of polymer donor PM6 and nonfullerene acceptor Y6, it detects broadband from UV to NIR (940 nm). The ultrathin layer of IL gel provides water resistance and also induces a nanoscale interfacial electric double layer (EDL), which enhances charge separation and sensitivity without external bias, maintaining stability during 168 h of unencapsulated self-powered operation underwater immersion. The device has fast response times (30 and 47 μs) and a high cutoff frequency (∼187 kHz). Exploiting these features, we demonstrate a self-powered secure aerial and underwater bidirectional communication system, where one wavelength channel transmits the primary data and another provides encryption. Stable optical signal transmission through a water channel and clear waveform recovery highlight the device’s robustness as a promising technology for secure communication, with applications in naval operations, diver-to-surface communication, aircraft-to-sea transmissions, and marine IoT networks.
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