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Biocompatible/Degradable Silk Fibroin:Poly(Vinyl Alcohol)-Blended Dielectric Layer Towards High-Performance Organic Field-Effect Transistor

机译:可生物降解/可降解的丝素蛋白:面向高性能有机场效应晶体管的聚乙烯醇混合介电层

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Biocompatible silk fibroin (SF):poly(vinyl alcohol) (PVA) blends were prepared as the dielectric layers of organic field-effect transistors (OFETs). Compared with those with pure SF dielectric layer, an optimal threshold voltage of ~0?V, high on/off ratio of ~10_(4), and enhanced field-effect mobility of 0.22?cm_(2)/Vs of OFETs were obtained by carefully controlling the weight ratio of SF:PVA blends to 7:5. Through the morphology characterization of dielectrics and organic semiconductors by utilizing atom force microscopy and electrical characterization of the devices, the performance improvement of OFETs with SF:PVA hybrid gate dielectric layers were attributed to the smooth and homogeneous morphology of blend dielectrics. Furthermore, due to lower charge carrier trap density, the OFETs based on SF:PVA-blended dielectric exhibited a higher bias stability than those based on pure SF dielectric.
机译:制备生物相容性丝素蛋白(SF):聚乙烯醇(PVA)混合物作为有机场效应晶体管(OFET)的介电层。与具有纯SF介电层的薄膜相比,获得的最佳阈值电压约为0?V,高通/断比约为10_(4),场效应迁移率增强了0.22?cm_(2)/ Vs的OFET。通过小心地将SF:PVA混合物的重量比控制为7:5。通过利用原子力显微镜对电介质和有机半导体进行形态学表征以及器件的电学表征,具有SF:PVA混合栅电介质层的OFET的性能提高归因于混合电介质的光滑且均匀的形态。此外,由于较低的电荷载流子陷阱密度,基于SF:PVA的电介质的OFET的偏置稳定性高于基于纯SF电介质的OFET。

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