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Reactive Dedoping of Polymer Semiconductors To Boost Self-Powered Schottky Diode Performances

机译:高分子半导体的反应性促进自动肖特基二极管性能

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A facile and strategic junction tuning technology is reported to boost self-powered organic Schottky photodiode (OPD) performances by synergetic contributions of reactive dedoping effects. It is shown that dedoping poly(3-hexylthiophene-2,5-diyl) (P3HT) films with 1-propylamine (PA) solution significantly reduces not only acceptor-defect density but also intrinsic doping level, leading to dramatically enlarged depletion width of metal/polymer Schottky junctions, as confirmed by ultraviolet photoelectron spectroscopy and Mott-Schottky junction analyses. As a result, whole penetration regions of photons corresponding to absorption bands of P3HT can be fully covered by the depletion region of Schottky junctions, even without the assistance of external electric fields. In addition, it is shown that non-solvent exposure effects of PA dedoping further enable lower paracrystalline disorder and, thus, higher charge carrier mobility, by means of grazing incidence X-ray diffraction, field-effect mobility, and space-charge-limited current analyses. As a result of such synergetic advantages of the PA dedoping method, non-power-driven green-selective OPDs were demonstrated with a high specific detectivity exceeding 6 x 10(12) Jones and a low noise-equivalent power of 5.05 x 10(-14) W Hz(-0.5). Together with a fast temporal response of 26.9 mu s and a wide linear dynamic range of 201 dB, the possibility of realizing non-power-driven, near-ideal optimization of solution-processed OPDs with a facile dedoping method is demonstrated.
机译:据报道,通过协同贡献,据报道,促进自动有机肖特基光电二极管(OPD)表现,通过协同对抗的效果的协同贡献。结果表明,用1-丙胺(PA)溶液的聚(3-己基噻吩-2,5-二基)(P3HT)膜不仅可以显着降低受体缺陷密度,而且显着降低了固有掺杂水平,导致耗尽宽度显着扩大金属/聚合物肖特基结,如紫外线光电子体光谱和MOTT-SCHOTTKY结分析所证实。结果,即使没有外部电场的辅助,也可以完全由P3HT的吸收带对应于P3HT吸收带的光子的整个渗透区域。另外,通过放牧入射X射线衍射,现场效应迁移率和空间电荷限制,PA采用的非溶剂曝光效应进一步实现降低蜕皮瘤病症,因此通过放牧入射X射线衍射,场效应迁移率和空间充电限制目前的分析。由于PA采用方法的这种协同优点,具有高特定检测率的非动力驱动的绿色选择性OPS超过6×10(12)琼斯和5.05×10的低噪声等效功率( - 14)W Hz(-0.5)。展示了快速时间响应26.9 mu s和201 dB的宽线性动态范围,实现了实现非动力驱动的可能性,具有溶液处理的OPD的近乎理想的优化,并进行了搭配脱离的方法。

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