Photomemory and Pulse Monitoring Featured Solution‐Processed Near‐Infrared Graphene/Organic Phototransistor with Detectivity of 2.4 × 1013 Jones

材料科学 石墨烯 光电二极管 光电子学 光电探测器 响应度 纳米技术
作者
Zeyu He,Jiayue Han,Xiaoyang Du,Luye Cao,Jun Wang,Caijun Zheng,Hui Lin,Silu Tao
出处
期刊:Advanced Functional Materials [Wiley]
卷期号:31 (37) 被引量:40
标识
DOI:10.1002/adfm.202103988
摘要

Abstract Emerging graphene/organic phototransistors are eye‐catching technologies owing to their unique merits including easy/low‐cost fabrication, temperature independent, and achieving various functions. However, their development in the near‐infrared (NIR) region is experiencing a bottleneck of inferior sensitivity due to low exciton dissociation efficiency and inefficient charge extraction rate. Here, a novel‐design solution‐processed graphene/organic NIR phototransistor is reported, that is, creatively introducing electron extraction layer of ZnO on graphene channel and employing organic ternary bulk heterojunction as photosensitive layer, successfully breaking that bottleneck. The phototransistor exhibits a high responsivity of 6.1 × 10 6 A W −1 , a superior detectivity of 2.4 × 10 13 Jones, and a remarkable minimum detection power of 1.75 nW cm −2 under 850 nm radiation. Considering its excellent NIR detection performance, a noncontact transmission‐type pulse monitoring is carried out with no external circuit support, from which human pulse signal and heart rate can be displayed in real time. The phototransistor, interestingly, can be switched into a photomemory function with a retention time of 1000 s in the atmosphere through a gate voltage of −20 V. The design takes the characteristics of graphene/organic phototransistors to a higher level, beyond the limit of sensitivity, and opens up a novel approach for developing multifunction devices.
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