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An improved strategy for transferring and adhering thin nanoporous alumina membranes onto conducting transparent electrodes for template assisted electrodeposition of high aspect ratio semiconductor nanowires with increased optical absorption

机译:一种改进的缩进和粘附薄纳米多孔氧化铝膜的透明电极,用于对高纵横比半导体纳米线的模板辅助电沉积进行透明电极,具有增加的光学吸收

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摘要

This article presents a new method for transferring and enhancing the adhesion of thin nanoporous alumina (NPA) membranes onto non-atomically flat substrates like fluorine-doped tin oxide (FTO) coated glass. The study reports use of glycerol as an additive to reduce the brittleness of the polystyrene filler that was used to fill the pores of the NPA membrane. Additionally, a new reflux-based method is reported here for the complete removal of the polystryrene filler from the porous channels of alumina. The adhesion between an NPA membrane and an underlying electrode was enhanced by electrodepositing a thin (similar to 40 nm) intermediate layer of the conducting polymer polyaniline (PANT). The PANI layer acts as an efficient electrostatic adhesive between the NPA and the conducting glass electrode and ensures ultra-strong adhesion of the NPA membrane, which can survive the harsh conditions of CdTe nanowire electrodeposition (60 degrees C temperature and an acidic electrolyte) without delamination for 30 min. The resulting nanowires clearly templated the structure of NPA and displayed free-standing nanowires over a large area with a diameter of around 60 nm, a length of approximately 2.8 mu m (aspect ratio similar to 47) and an areal density of 5.9 x 10(12) nanowires cm(-2). Total optical absorption measurement on the free-standing CdTe nanowires exhibited a 45% enhancement over a wavelength range of 350-1400 nm as compared to a CdTe planar thin film of same thickness.
机译:本文介绍了一种用于转移和增强薄纳米氧化铝(NPA)膜在非原子扁平氧化锡(FTO)涂覆玻璃上的非原子平底基材上的粘附性的新方法。该研究报告使用甘油作为添加剂,以减少用于填充NPA膜的孔的聚苯乙烯填料的脆性。另外,据报道了一种新的基于回流的方法,用于从氧化铝的多孔通道完全除去聚酯丙烯填料。通过将导电聚合物聚苯胺(裤子)的薄(类似于40nm)中间层电沉积而增强了NPA膜和下面电极之间的粘附性。 PANI层用作NPA和导电玻璃电极之间的有效静电粘合剂,并确保NPA膜的超强粘附,这可以在没有分层的情况下存活CDTE纳米线电沉积(60℃温度和酸性电解质)的苛刻条件30分钟。所得到的纳米线清楚地模板了NPA的结构,并在直径约为60nm的大面积上显示了独立纳米线,长度约为2.8μm(纵横比类似于47),并且面积密度为5.9×10( 12)纳米线cm(-2)。与相同厚度的CDTE平面薄膜相比,独立式CDTE纳米线上的总光吸收测量在350-1400nm的波长范围内表现出45%的增强。

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