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Ink-jet printing of organic semiconductor for fabricating organic thin-film transistors: Film uniformity control by ink composition

机译:用于制造有机薄膜晶体管的有机半导体的喷墨印刷:通过油墨成分控制薄膜均匀性

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We have investigated the influence of solvent chemistry on ink-jet printed semiconductor patterns. Our research focuses on improving the uniformity of an ink-jet printed single dot semiconductor by adjusting the solvent mixture combination. Use of a solvent mixture with one solvent of a lower boiling point and a higher solubility with respect to the semiconductor molecules and another of a higher boiling point and a lower solubility allows us to produce a uniform single dot pattern by ink-jet printing. It was observed that the film uniformity of the semiconductor layer plays an important role in determining the electrical parameters of the transistor. In comparison with uncontrolled ink composition, the OTFT fabricated from the well-controlled ink exhibited better device performance, including a carrier mobility of 8.5 X 10~(-3) cm~2 V~(-1) s~(-1) in the saturation regime, an on/off current ratio of 10~3, and a threshold voltage of 0.39 V with subthreshold slopes of 0.95 V dec~(-1).
机译:我们已经研究了溶剂化学对喷墨印刷半导体图案的影响。我们的研究重点是通过调整溶剂混合物的组合来提高喷墨打印的单点半导体的均匀性。相对于半导体分子使用具有较低沸点和较高溶解度的一种溶剂以及具有较高沸点和较低溶解度的另一种的溶剂混合物允许我们通过喷墨印刷产生均匀的单点图案。已经观察到,半导体层的膜均匀性在确定晶体管的电参数中起重要作用。与不受控制的油墨组成相比,由良好控制的油墨制成的OTFT表现出更好的器件性能,包括载流子迁移率为8.5 X 10〜(-3)cm〜2 V〜(-1)s〜(-1)。饱和状态,开/关电流比为10〜3,阈值电压为0.39 V,亚阈值斜率dec〜(-1)为0.95V。

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