材料科学
光电子学
半导体
响应度
电子迁移率
有机半导体
光电探测器
晶体管
吸收(声学)
场效应晶体管
制作
病理
复合材料
电压
物理
医学
量子力学
替代医学
作者
Ying‐Shi Guan,Jing Qiao,Yingying Liang,Hari Krishna Bisoyi,Chao Wang,Wei Xu,Daoben Zhu,Quan Li
标识
DOI:10.1038/s41377-022-00936-z
摘要
An organic semiconductor with high carrier mobility and efficient light absorption over a wide spectral range is of the most important yet challenging material for constructing a broadband responsive organic photodetector. However, the development of such organic semiconductors, especially for air-stable n-type organic small molecule semiconductors, is still at an early stage. Here we report the fabrication of high-performance n-type semiconducting crystalline nanosheets and the development of air-stable field-effect transistors, phototransistors, with high response over a broad spectrum. The n-type small molecule semiconductor is assembled into a crystalline nanosheet based on the solvent-phase interfacial self-assembly method. N-type field-effect transistors with high electron mobility are fabricated and their electrical performances exhibit excellent air stability. Impressively, the demonstrated phototransistors exhibit an ultrahigh responsivity over a wide spectral range from 365 to 940 nm, with a maximum photoresponsivity of 9.2 × 105 A W-1 and specific detectivity of 5.26 × 1013 Jones, which is the best performance among the reported n-type organic small molecule-based phototransistors.
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