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Uniaxial orientation of P3HT film prepared by soft friction transfer method

机译:软摩擦转移法制备的P3HT薄膜的单轴取向

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摘要

The realization of room-temperature processes is an important factor in the development of flexible electronic devices composed of organic materials. In addition, a simple and cost-effective process is essential to produce stable working devices and to enhance the performance of a smart material for flexible, wearable, or stretchable-skin devices. Here, we present a soft friction transfer method for producing aligned polymer films; a glass substrate was mechanically brushed with a velvet fabric and poly(3-hexylthiophene) (P3HT) solution was then spin-coated on the substrate. A P3HT film with a uniaxial orientation was obtained in air at room temperature. The orientation factor was 17 times higher than that of a film prepared using a conventional friction transfer technique at a high temperature of 120 °C. In addition, an oriented film with a thickness of 40 nm was easily picked up and transferred to another substrate. The mechanism for orientation of the film was investigated using six experimental methods and theoretical calculation, and was thereby attributed to a chemical process, i.e., cellulose molecules attach to the substrate and act as a template for molecular alignment.
机译:室温过程的实现是开发由有机材料组成的柔性电子设备的重要因素。此外,简单且具有成本效益的过程对于生产稳定的工作设备并增强用于柔性,可穿戴或可拉伸皮肤设备的智能材料的性能至关重要。在这里,我们提出了一种软摩擦传递方法,用于生产取向聚合物薄膜;用天鹅绒织物机械刷玻璃基板,然后将聚(3-己基噻吩)(P3HT)溶液旋涂在基板上。在室温下于空气中获得具有单轴取向的P3HT膜。取向系数是在120°C的高温下使用常规摩擦转移技术制备的薄膜的17倍。另外,很容易拾取厚度为40纳米的取向膜,并将其转移到另一个基板上。使用六种实验方法和理论计算来研究膜的取向机理,并且将其归因于化学过程,即,纤维素分子附着于基底并充当分子取向的模板。

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