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首页> 外文期刊>Macromolecules >Manipulation on the morphology and electrical properties of aligned electrospun nanofibers of poly(3-hexylthiophene) for field-effect transistor applications
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Manipulation on the morphology and electrical properties of aligned electrospun nanofibers of poly(3-hexylthiophene) for field-effect transistor applications

机译:对场效应晶体管应用的聚(3-己基噻吩)排列的电纺纳米纤维的形貌和电学特性的处理

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摘要

We prepared aligned poly(3-hexylthiophene) (P3HT) nanofibers for the application of organic field-effect transistor (OFET) by two-fluid coaxial electrospinning (ES) technique using P3HT as core and PMMA as shell, followed by extraction of PMMA. Effects of shell flow rate and thermal annealing temperature on the morphology and optoelectronic properties were explored. The experimental results showed that the prepared P3HT nanofibers were highly aligned and their diameters were smaller in the case of low shell flow rate. The OFET carrier mobility of aligned P3HT ES nanofibers using the low shell flow rate could be dramatically improved up to 3 orders of magnitude (1.92 × 10~(-1) cm~2/V?s with the on/off ratio of 4.45 × 10~4) in comparison with those from the high shell flow rate. The results of wide-angle X-ray scattering (WAXS) and photophysical properties (optical absorption and polarized photoluminescence) suggested the enhancement of π-π stacking and crystallinity of P3HT in the nanofibers at a lower shell flow rate, due to the higher electrical force along nanofiber axis. Besides, as thermal annealing temperature was higher than 100 °C, the relaxation of P3HT orientation in the nanofibers led to a reduction of the measured field-effect mobility. The experimental results addressed the importance of the process parameters (i.e., the shell flow rate and thermal annealing temperature) on tuning the chain packing and orientation of P3HT in nanofibers and the resultant OFET characteristics.
机译:我们通过以P3HT为芯,PMMA为壳的双流体同轴电纺丝(ES)技术制备了用于有机场效应晶体管(OFET)的取向聚(3-己基噻吩)(P3HT)纳米纤维。探索了壳流速和热退火温度对形貌和光电性能的影响。实验结果表明,所制备的P3HT纳米纤维在低壳流速的情况下排列高度,直径较小。在低壳流速下,取向的P3HT ES纳米纤维的OFET载流子迁移率可显着提高至3个数量级(1.92×10〜(-1)cm〜2 / V?s,开/关比为4.45× 10〜4)与高壳流量相比。广角X射线散射(WAXS)和光物理性质(光吸收和偏振光致发光)的结果表明,由于较高的电,在较低的壳流速下,纳米纤维中P3HT的π-π堆积和结晶性得到增强。沿纳米纤维轴的力。此外,当热退火温度高于100°C时,纳米纤维中P3HT取向的松弛导致测量的场效应迁移率降低。实验结果解决了工艺参数(即壳流速和热退火温度)对于调节纳米纤维中P3HT的链堆积和取向以及所产生的OFET特性的重要性。

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