多孔阳极氧化铝光吸收增强的孔径依赖性

Riad M. Hameed, A. Al-Haddad, Abbas K. H. Albarazanchi
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引用次数: 1

摘要

采用两步阳极氧化法制备了3个高有序AAO模板样品,在扩孔过程中对孔径进行了调整,孔径分别为50nm、70nm和90nm。采用扫描电镜(SEM)对制备的AAO模板的孔径和周期六边形结构的细胞单位进行了测定。此外,紫外可见光谱显示了制备的AAO模板在不同孔径下的吸光度变化。为了证明孔径(PD)和中间层(IL)可以提高材料的吸光度,采用流形时域有限差分法(Lumerical FDTD solution)模拟了AAO模板的精确实验条件。结果表明,特定孔径和特定中间层可以提高材料的吸光度。因此,该结果可用于与太阳能转换(抗反射和光催化剂)和光子学相关的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pore Size Dependence of Optical Absorption Enhancement in Porous Anodic Aluminum Oxide
Three samples of high ordered AAO template were prepared via a two-step anodization procedure, the pore size was modified during the pore-widening process to tune the pore diameter to 50, 70, and 90 nm. Scanning electron microscopy (SEM) was adopted to gauge the pore diameter and the cell unit of the periodical hexagonal structure of the prepared AAO templates. In addition, the UV-vis spectrometer shows the variation of the absorbance spectrum for each pore size of the prepared AAO templates. To prove that the pore diameter (PD) and the intermediate layer (IL) could enhance the absorbance of the materials, a Lumerical FDTD solution was used by involving the exact experimental conditions of the AAO template. The resulting data show that a specific pore diameter with a specific intermediate layer can improve the absorbance spectrum of the materials. Thus, the results could serve the applications related to solar energy conversion (antireflective and photocatalyst) and photonics.
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