Enhanced and Tunable Absorption Characteristics of Au-nanoparticle Loaded ZnO Nanorods Grown by Hydrothermal Technique

S. Farhad, A. Hoque, N. Tanvir, S. Islam, M. Hossain, Md. Zunaid Baten
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Abstract

In this work we report materials growth, optical characterization and finite-difference time domain (FDTD) based numerical analysis to study the enhancement and tuning of absorption characteristics of gold nanoparticle loaded ZnO nanorods grown by hydrothermal technique. Scanning electron microscopy imaging confirms that nearly vertically oriented, ordered array of ZnO nanorods can be grown on glass substrates if prior to hydrothermal growth, a seed layer of Al-doped ZnO (AZO) is deposited onto the substrate using drop-casting technique. Optical spectroscopy confirms absorption enhancement of the array with increasing size of gold-nanoparticles attached to the ZnO nanorods. Numerical results obtained from FDTD analysis of the three-dimensional photonic structure confirm that the reduced transmittance observed at ~550 nm is owing to the absorption enhancement caused by plasmonic resonance of the Au-nanoparticles. The simulation results also show that absorption characteristics of such arrays can be conveniently tuned from visible to near-infra-red wavelengths by controlling diameter and areal density of the nanorods. This study also suggests future scopes of research in this area regarding further enhancement and tuning of absorption characteristics of nanoparticle loaded ZnO nanorods grown on an AZO seeded substrate by hydrothermal technique.
水热法制备负载au纳米颗粒ZnO纳米棒的增强可调吸收特性
在本工作中,我们报告了材料生长,光学表征和基于时域有限差分(FDTD)的数值分析,以研究水热技术生长的金纳米颗粒负载ZnO纳米棒的吸收特性的增强和调谐。扫描电镜成像证实,如果在水热生长之前,使用滴铸技术在衬底上沉积一层al掺杂ZnO (AZO)的种子层,可以在玻璃衬底上生长出几乎垂直取向的有序ZnO纳米棒阵列。光谱学证实,随着ZnO纳米棒上金纳米颗粒尺寸的增加,阵列的吸收增强。三维光子结构时域有限差分分析的数值结果证实,在~550 nm处观察到的透射率降低是由于au纳米粒子的等离子共振引起的吸收增强所致。仿真结果还表明,通过控制纳米棒的直径和面密度,该阵列的吸收特性可以方便地从可见光波长调整到近红外波长。该研究还提出了该领域未来的研究范围,即通过水热技术进一步增强和调整在AZO种子衬底上生长的纳米颗粒负载ZnO纳米棒的吸收特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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