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Molecular doping in organic semiconductors: fully solution-processed, vacuum-free doping with metal-organic complexes in an orthogonal solvent

机译:在有机半导体中的分子掺杂:通过正交溶剂中的金属 - 有机络合物进行完全溶液加工,真空无掺杂

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摘要

Chemical doping in pi-conjugated organic semiconductors, which involves a redox reaction between a host pi-conjugated material and a dopant, is achieved by either co-evaporation, co-dissolved solution, or exposure to a dopant gas. Here, we demonstrate a new route for molecular doping; a thiophene-based semiconducting polymer film can be doped with dopants dispersed in an orthogonal solvent. An increase in conductivity is demonstrated as a result of adopting a strong acceptor dopant, a metal-organic complex, to achieve an efficient charge transfer because the introduced dopant is likely to reside within the polymer lamellae throughout the entire bulk of the organic semiconductor film. Comprehensive magneto-transport and spectroscopic studies confirm that band-like transport is realized in such dopant-implanted conducting polymers. The present method can shed light on molecular doping in materials science because any molecular dopants that are non-evaporative and insoluble can be used with this method.
机译:通过共蒸发,共溶解的溶液或暴露于掺杂剂气体,实现了PI缀合的有机半导体中的化学掺杂,其涉及宿主PI缀合材料和掺杂剂之间的氧化还原反应。在这里,我们展示了一种用于分子掺杂的新途径;基于噻吩的半导体聚合物膜可以掺杂有分散在正交溶剂中的掺杂剂。由于采用强受体掺杂剂,金属有机络合物,达到有效电荷转移,因此对导电性的增加进行说明,因为引入的掺杂剂在整个有机半导体膜的整个大部分中,引入的掺杂剂可能存在于聚合物薄片内。综合磁传输和光谱研究证实,在这种掺杂剂植入的导电聚合物中实现了带状传送。本方法可以在材料科学中进行分子掺杂,因为任何未蒸发和不溶性的任何分子掺杂剂都可以与该方法一起使用。

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