有机场效应晶体管
材料科学
光异构化
有机半导体
光电子学
半导体
场效应晶体管
偶氮苯
晶体管
纳米技术
聚合物
化学
电压
有机化学
异构化
复合材料
催化作用
物理
量子力学
作者
Mingliang Li,Jing Wang,Xiaoge Wang,Runze Yu,Yunteng Wang,Yi Qiu,Xiang Cheng,Guozhi Wang,Gang Chen,Kefeng Xie,Jinyao Tang
标识
DOI:10.1038/s41467-022-32647-9
摘要
Abstract With the wide application of organic semiconductors (OSCs), researchers are now grappling with a new challenge: design and synthesize OSCs materials with specific functions to satisfy the requirements of high-performance semiconductor devices. Strain engineering is an effective method to improve the semiconductor material’s carrier mobility, which is fundamentally originated from the rearrangement of the atomic packing model of materials under mechanic stress. Here, we design and synthesize a new OSC material named AZO-BTBT-8 based on high-mobility benzo[ b ]benzo[4,5]thieno[2,3- d ]thiophene (BTBT) as the semiconductor backbone. Octane is employed to increase molecular flexibility and solubility, and azobenzene at the other end of the BTBT backbone provides photoisomerization properties and structural balance. Notably, the AZO-BTBT-8 photoisomerization leads to lattice strain in thin-film devices, where exceptional device performance enhancement is realized. On this basis, a large-scale flexible organic field-effect transistor (OFET) device array is fabricated and realizes high-resolution UV imaging with reversible light response.
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