光电探测器
可见光通信
光电子学
响应度
可见光谱
平面的
异质结
材料科学
弯曲
弯曲半径
光通信
传输(电信)
曲率半径
光学
曲率
计算机科学
薄膜
响应时间
光子学
分段
光开关
数据传输
半径
太赫兹辐射
涂层
发光二极管
作者
Yuchen Wu,Lipeng Qiu,Jizhou Zhuang,Hao Ni,Ziyi Tian,Zihan Zhao,Linling Qin,Wei Tian,Xiaofeng Li,Shaolong Wu
出处
期刊:ACS Photonics
[American Chemical Society]
日期:2025-10-28
卷期号:12 (11): 5901-5911
被引量:1
标识
DOI:10.1021/acsphotonics.5c01156
摘要
Si-based photodetectors (PDs), commonly used as optical receivers in visible light communication (VLC) systems, generally lack flexibility and face a dilemma between responsivity-response speed. This study reports a flexible Si/SnO2 heterojunction by conformally coating a SnO2 thin film on the self-supporting, pyramid-shaped Si film to efficiently absorb visible light and rapidly extract photogenerated carriers, thereby breaking the responsivity-response speed dilemma. The as-prepared PD under blue light achieves a responsivity of 0.267 A/W and a rise (decay) time of 3.1 μs (4.1 μs), which is shorter than that of most previously reported flexible Si-based PDs. The flexible device further presents excellent stability and adaptability to curved surfaces. In the bending state with a curvature radius (ρ) of 1 cm, the optical reception angle expands by 24° compared to that of the planar state. Under the condition of meeting the forward error correction threshold, the bending PD with ρ = −1 cm for character transmission can deviate from the illumination center at a maximum distance 2.1 times larger than that in the planar case. This work proposes a new flexible PD and its application scheme for Internet of things (IoT) and VLC applications.
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