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Crystallization of Poly(3-hexylthiophene) Nanofiber in a Narrow Groove

机译:聚(3-己基噻吩)纳米纤维在窄槽中的结晶。

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摘要

Whisker-type poly(3-hexylthiophene-2,5-diyl) (P3HT) nanofibers were aligned by restricting their growth direction using an approximately 100–1000 nm wide narrow groove fabricated by thermal nanoimprinting. In grooves made of an amorphous fluoropolymer (CYTOP™) with widths of less than 1500 nm, the nanofibers oriented uniaxially perpendicular to the groove and their length was limited to the width of the groove. This result indicates that the nucleation of nanofibers tends to be selectively promoted near the interface of CYTOP™ with fluoro-groups, and nanofiber growth perpendicular to the wall is promoted because P3HT molecules are supplied more frequently from the center of the groove. Furthermore, the orientation induced anisotropic conductivity, and the conductivity parallel to the oriented nanofibers was more than an order of magnitude higher than that perpendicular to the oriented nanofibers.
机译:晶须型聚(3-己基噻吩-2,5-二基)(P3HT)纳米纤维通过使用大约100-1000 nm宽的窄槽(通过热纳米压印制造)来限制其生长方向,从而使其排列整齐。在由宽度小于1500 nm的无定形含氟聚合物(CYTOP™)制成的凹槽中,纳米纤维单轴取向垂直于凹槽,其长度仅限于凹槽的宽度。该结果表明,在CYTOP TM与氟基团的界面附近,倾向于选择性地促进纳米纤维的成核,并且由于从沟槽中心更频繁地供应P3HT分子,因此促进了垂直于壁的纳米纤维的生长。此外,取向诱导各向异性导电性,并且平行于取向纳米纤维的电导率比垂直于取向纳米纤维的电导率高一个数量级。

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