Department of Chemistry and Nano Science, Ewha Womans University , 52 Ewhayeodae-gil, Seodaemun-gu, Seoul 03760, Korea.
Department of Physics and Astronomy and Institute of Applied Physics, Seoul National University , Seoul 151-747, Korea.
ACS Appl Mater Interfaces. 2017 Apr 12;9(14):12865-12871. doi: 10.1021/acsami.7b01058. Epub 2017 Apr 3.
Here, we demonstrate that the self-assembly of poly(3-hexylthiophene) (P3HT) at the air-water interface can lead to free-standing films of densely packed P3HT nanowires. Interfacial self-assembly on various liquid subphases, such as water, diethylene glycol, and glycerol, indicates that the viscosity of the subphase is an important factor for the formation of well-ordered nanostructures. The thin-film morphology is also sensitive to the concentration of P3HT, its molecular weight (MW), and the presence of oxidative defects. The densely packed nanowire films can be easily transferred to solid substrates for device applications. The ultrathin films of P3HT prepared by the interfacial assembly showed significantly higher hole mobility (∼3.6 × 10 cm/V s) in a field-effect transistor than comparably thin spin-cast films. This work demonstrates that the air-liquid interfacial assembly is not limited to amphiphilic polymers and can, under optimized conditions, be applied to fabricate ultrathin films of widely used conjugated polymers with controlled morphologies.
在这里,我们证明了聚 3-己基噻吩(P3HT)在气-液界面的自组装可以导致高度堆积的 P3HT 纳米线的自支撑膜。在各种液体亚相中(如水、二甘醇和甘油)的界面自组装表明,亚相的粘度是形成有序纳米结构的重要因素。薄膜形态对 P3HT 的浓度、分子量(MW)以及氧化缺陷的存在也很敏感。高度堆积的纳米线膜可以很容易地转移到固体基底上用于器件应用。通过界面组装制备的超薄 P3HT 薄膜在晶体管中表现出比相当薄的旋涂薄膜更高的空穴迁移率(约 3.6×10^-3 cm^2/V s)。这项工作表明,气-液界面组装不仅限于两亲聚合物,并且在优化条件下,可以应用于具有受控形态的广泛使用的共轭聚合物的超薄薄膜的制造。