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Preparation and Application of Organic-Inorganic Nanocomposite Materials in Stretched Organic Thin Film Transistors

机译:拉伸有机薄膜晶体管中有机-无机纳米复合材料的制备及应用

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摘要

High-transparency soluble polyimide with COOH and fluorine functional groups and TiO -SiO composite inorganic nanoparticles with high dielectric constants were synthesized in this study. The polyimide and inorganic composite nanoparticles were further applied in the preparation of organic-inorganic hybrid high dielectric materials as the gate dielectric for a stretchable transistor. The optimal ratio of organic and inorganic components in the hybrid films was investigated. In addition, Jeffamine D2000 and polyurethane were added to the gate dielectric to improve the tensile properties of the organic thin film transistor (OTFT) device. PffBT4T-2OD was used as the semiconductor layer material and indium gallium liquid alloy as the upper electrode. Electrical property analysis demonstrated that the mobility could reach 0.242 cm ·V ·s at an inorganic content of 30 wt.%, and the switching current ratio was 9.04 × 10 . After Jeffamine D2000 and polyurethane additives were added, the mobility and switching current could be increased to 0.817 cm ·V ·s and 4.27 × 10 for Jeffamine D2000 and 0.562 cm ·V ·s and 2.04 × 10 for polyurethane, respectively. Additives also improved the respective mechanical properties. The stretching test indicated that the addition of polyurethane allowed the OTFT device to be stretched to 50%, and the electrical properties could be maintained after stretching 150 cycles.
机译:本研究合成了具有COOH和氟官能团的高透明可溶性聚酰亚胺以及具有高介电常数的TiO-SiO复合无机纳米粒子。将该聚酰亚胺和无机复合纳米粒子进一步应用于有机-无机杂化高介电材料的制备中,作为可拉伸晶体管的栅极电介质。研究了杂化膜中有机和无机成分的最佳比例。此外,将Jeffamine D2000和聚氨酯添加到栅极电介质中,以改善有机薄膜晶体管(OTFT)器件的拉伸性能。 PffBT4T-2OD被用作半导体层材料,铟镓液态合金被用作上电极。电性能分析表明,在无机含量为30 wt。%时,迁移率可达0.242 cm·V·s,开关电流比为9.04×10。加入Jeffamine D2000和聚氨酯添加剂后,对于Jeffamine D2000,迁移率和开关电流可以分别增加到0.817 cm·V·s和4.27×10,对于聚氨酯,可以增加到0.562 cm·V·s和2.04×10。添加剂还改善了各自的机械性能。拉伸试验表明,加入聚氨酯可使OTFT器件拉伸至50%,并且在拉伸150次后可以保持电性能。

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