材料科学
光电探测器
光电子学
光通信
电解质
无线
光无线
海水
数据传输
计算机科学
电信
电极
计算机硬件
物理
海洋学
量子力学
地质学
作者
Yuanmin Luo,Danhao Wang,Yang Kang,Xin Liu,Shi Fang,Muhammad Hunain Memon,Huabin Yu,Haochen Zhang,Dongyang Luo,Xiyu Sun,Boon S. Ooi,Chen Gong,Zhengyuan Xu,Haiding Sun
标识
DOI:10.1002/adom.202102839
摘要
Abstract The emerging photoelectrochemical‐type photodetector (PEC‐PD), because of its unique device architecture by using an aqueous electrolyte, is naturally applicable in the pursuit of underwater optical communication without sophisticated device packaging and assembling. Unfortunately, the traditional PEC detecting process typically involves a large electrochemical workstation with long cables and wire connections for photo signal acquisition, which hinders its applications in wireless optical communication. In this work, an AlGaN nanowire‐based self‐powered PEC‐PD is fabricated that uses seawater as an electrolyte, and then an optical communication system including the PEC‐PD and a portable electrochemical workstation as the signal receiver for data communication is built. Essentially, the self‐power PEC‐PD shows a high responsivity of −15.5 mA W –1 , a fast response/recovery time of ≈100 ms, and high stability operation in the seawater electrolyte. Foremost, the optical communication system shows high accuracy in wireless transmission of ASCII code signals in a seawater environment. Such a demonstration offers a new device architecture for possible under‐seawater communication systems by leveraging the unique operation principle of photoelectrochemical devices in the future.
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