材料科学
光电子学
光电探测器
薄膜
量子效率
电子迁移率
有机半导体
有机电子学
纳米技术
晶体管
电压
量子力学
物理
作者
Deyang Ji,Ting Jiang,Yingshuang Zheng,Yajing Sun,Zhongming Wei,Liqiang Li,Wenping Hu
标识
DOI:10.1002/adom.202102484
摘要
Abstract Organic phototransistors (OPTs) are playing an indispensable role in organic optoelectronics, which greatly show their promising application in optical communication, video imaging, missile guidance, and night vision. However, because the thermally activated mode dominated for thin‐film devices leads to a sharp drop in mobility at low temperatures, until now, most of the studies about OPTs are performed at room temperature, severely hindering their further potential optoelectronic application over a broad range of temperatures, especially at low temperature environment. In this work, the optoelectronic properties of a small molecule (2,6‐diphenylanthracene, DPA) based OPTs with band‐like transport are studied at low temperatures. The devices exhibit outstanding optoelectronic properties in terms of mobility (2.6 cm 2 V −1 s −1 ), on/off ratio (≈10 4 ), detectivity (10 13 Jones), and external quantum efficiency (2500%) even at 150 K, which is superior to the performance of devices with thermally activated mode. In addition, the organic photodetector at low temperatures is also fabricated. Our results demonstrate that organic π‐conjugated DPA small‐molecule has great potential in low‐temperature application.
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