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Controlled ambipolar charge transport of polymer semiconductors by viologen-doping for complementary-like electronic circuits

机译:通过紫罗兰色掺杂控制类似互补电子电路对聚合物半导体的双极性电荷传输的控制

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We report on controllable ambipolar charge transport in polymeric semiconductors by the incorporation of viologen-based molecular additives. The viologen dopants selectively contribute to an increase in the charge carrier density of the electrons while enhancing the fibril-like crystalline thin-film morphology of the polymers to provide favourable charge transport in staggered-structure organic field-effect transistors. A well-balanced ambipolar behaviour is obtained at the optimised viologen concentration in donor-acceptor conjugated polymers by conversely modulating the p- and n-channel carrier mobilities within a given active layer. Complementary-like inverter circuits are demonstrated through the application of a simple blanket coating of a viologen-doped ambipolar semiconductor, which exhibits high ideal voltage switching at around half of the applied bias, a high gain of more than 50, and sufficient noise immunity to enable various applications for printed electronics and optoelectronics.
机译:我们通过掺入基于紫精的分子添加剂报告了聚合物半导体中可控的双极性电荷传输。紫罗兰掺杂剂选择性地有助于电子的电荷载流子密度的增加,同时增强聚合物的原纤维状晶体薄膜形态,以在交错结构的有机场效应晶体管中提供有利的电荷传输。通过反向调节给定活性层内的p通道和n通道载流子迁移率,在供体-受体共轭聚合物中的最佳紫精浓度下可获得平衡良好的双极性行为。通过简单涂覆一层紫胶掺杂的双极性半导体,可以证明互补型逆变器电路,该涂层在大约一半的施加偏压下显示出高理想电压开关,超过50的高增益,并具有足够的抗扰性支持印刷电子和光电子的各种应用。

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