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High-Aspect-Ratio and Highly Ordered 15-nm Porous Alumina Templates

机译:高纵横比和高度有序的15 nm多孔氧化铝模板

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Ordered anodic aluminum oxide (AAO) templates with pores <15 nm in diameter and an aspect ratio (length-to-diameter ratio) above 3 X 10~3 have been fabricated using a nonlithographic approach; specifically, by anodizing aluminum in an ethylene-glycol-containing sulfuric acid electrolyte. The pores are the smallest in diameter reported for a self-ordered AAO without pore aspect-ratio limitations and good ordering, which opens up the possibility of obtaining nanowire arrays in the quantum confinement regime that is of interest for efficient thermoelectric generators. The effect of the ethylene glycol addition on both the pore diameter and the ordering is evaluated and discussed. Moreover, 15-nm-diameter Bi3Te3 and poly(3-hexyl thiophene) (P3HT) nanowires have been prepared using these AAO templates. As known, Bi2Te3 is currendy the most efficient thermoelectric bulk material for room-temperature operations and, according with theory, its Seebeck coefficient should be increased when it is confined to nanowires with diameters close to 10 nm. On the other hand, P3HT is one of the main candidates for integrating organic photovoltaic and thermoelectric devices, and its properties are also proposed to increase when it is confined to nanoscale structures, mainly due to molecular orientation effects.
机译:使用非光刻方法制备了孔径<15 nm,长径比(长径比)大于3 X 10〜3的有序阳极氧化铝模板。具体地,通过在含乙二醇的硫酸电解质中对铝进行阳极氧化。对于没有孔纵横比的限制和良好的有序排列的自排序AAO,孔的直径最小,这为有效热电发生器感兴趣的量子约束机制提供了获得纳米线阵列的可能性。评估和讨论了添加乙二醇对孔径和有序性的影响。此外,已经使用这些AAO模板制备了直径15 nm的Bi3Te3和聚(3-己基噻吩)(P3HT)纳米线。众所周知,Bi2Te3是室温下最有效的热电体材料,根据理论,当将Bi2Te3限制在直径接近10 nm的纳米线时,应提高其塞贝克系数。另一方面,P 3 HT是用于集成有机光伏和热电装置的主要候选者之一,并且由于其分子取向效应而被限制在纳米级结构中时,其性能也被提议提高。

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