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Simultaneous Enhancement of Electron Injection and Air Stability in N-Type Organic Field-Effect Transistors by Water-Soluble Polyfluorene Interlayers

机译:水溶性聚芴中间层同时增强N型有机场效应晶体管中的电子注入和空气稳定性

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摘要

Here, we report the simultaneous attainment of efficient electron injection and enhanced stability under ambient conditions for top-gate/bottom-contact (TG/BC), n-type, organic field-effect transistors (OFETs) using water-soluble polyfluorene derivatives (WPFs). When inserting the WPF interlayers between a semiconductor and the BC Au electrodes, initially the ambipolar (6,6)-phenyl-C_(61)butyric acid methyl ester (PCBM) OFETs were fully converted to unipolar charge transport characteristics that were exclusively n-type with significantly increased electron mobilities as high as 0.12 cm~2/(V s) and a decreased threshold voltage. These improvements were mostly attributed to the interfacial dipoles of WPF layers that aligned to form a favorable energy band structure for efficient electron injection and to effectively block counter charge carriers. These were confirmed when values for the reduced work function of metal electrodes with WPFs and their correlated contact resistance were measured via the ultraviolet photoemission spectroscopy and the transmission-line method, respectively. Moreover, the WPF interlayers played an important role in air stability of PCBM OFETs that exhibited higher and appreciably enhanced by increasing the ethylene-oxide side chain lengths of WPFs, which presumably was due to the water/oxygen/ion capturing effects in the hydrophilic interlayers.
机译:在这里,我们报告了使用水溶性聚芴衍生物(t / gate / bottom-contact(TG / BC),n型有机场效应晶体管(OFET))在环境条件下同时获得有效的电子注入和增强的稳定性( WPF)。在半导体和BC Au电极之间插入WPF中间层时,最初,双极性(6,6)-苯基-C_(61)丁酸甲酯(PCBM)的OFET被完全转换为单极性电荷传输特性,仅n-电子迁移率显着提高至0.12 cm〜2 /(V s)且阈值电压降低。这些改进主要归因于WPF层的界面偶极子,它们对准形成了有利的能带结构,以进行有效的电子注入并有效地阻挡了反电荷载流子。当分别通过紫外光发射光谱法和传输线法测量具有WPF的金属电极的功函数降低值及其相关的接触电阻时,可以证实这些。此外,WPF中间层在PCBM OFET的空气稳定性中起着重要作用,通过增加WPF的环氧乙烷侧链长度表现出更高的水平,并且明显地得到了增强,这大概是由于亲水性中间层中水/氧/离子的捕获作用。

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