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首页> 外文期刊>Nanotechnology >Ultrahigh near infrared photoresponsive organic field-effect transistors with lead phthalocyanine/C-60 heterojunction on poly(vinyl alcohol) gate dielectric
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Ultrahigh near infrared photoresponsive organic field-effect transistors with lead phthalocyanine/C-60 heterojunction on poly(vinyl alcohol) gate dielectric

机译:在聚乙烯醇栅极电介质上具有铅酞菁/ C-60异质结的超高近红外光响应有机场效应晶体管

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Performances of photoresponsive organic field-effect transistors (photOFETs) operating in the near infrared (NIR) region utilizing SiO2 as the gate dielectric is generally low due to low carrier mobility of the channel. We report on NIR photOFETs based on lead phthalocyanine (PbPc)/C-60 heterojunction with ultrahigh photoresponsivity by utilizing poly(vinyl alcohol) (PVA) as the gate dielectric. For 808 nm NIR illumination of 1.69 mW cm(-2), an ultrahigh photoresponsivity of 21 A W-1, and an external quantum efficiency of 3230% were obtained at a gate voltage of 30 V and a drain voltage of 80 V, which are 124 times and 126 times as large as the reference device with SiO2 as the gate dielectric, respectively. The ultrahigh enhancement of photoresponsivity is resulted from the huge increase of electron mobility of C-60 film grown on PVA dielectric. AFM investigations revealed that the C-60 film grown on PVA is much smooth and uniform and the grain size is much larger than that grown on SiO2 dielectric, which together results in four orders of magnitude increase of the field-effect electron mobility of C-60 film.
机译:由于沟道的载流子迁移率低,在使用SiO2作为栅极电介质的近红外(NIR)区域中工作的光响应有机场效应晶体管(photOFET)的性能通常较低。我们报道了基于铅酞菁(PbPc)/ C-60异质结的NIR photOFET,它利用聚乙烯醇(PVA)作为栅极电介质,具有超高的光响应性。对于1.69 mW cm(-2)的808 nm NIR照明,在30 V的栅极电压和80 V的漏极电压下,获得21 A W-1的超高光响应度和3230%的外部量子效率,分别是SiO2作为栅极电介质的参考器件的124倍和126倍。光响应性的超高增强是由于在PVA电介质上生长的C-60薄膜的电子迁移率大大提高。原子力显微镜研究表明,在PVA上生长的C-60膜非常光滑且均匀,并且晶粒尺寸比在SiO2电介质上生长的晶粒大得多,这共同导致C-的场效应电子迁移率增加了四个数量级。 60片。

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