Effect of Refractive Index of Substrate on Fabrication and Optical Properties of Hybrid Au-Ag Triangular Nanoparticle Arrays

In this study, the nanosphere lithography (NSL) method was used to fabricate hybrid Au-Ag triangular periodic nanoparticle arrays. The Au-Ag triangular periodic arrays were grown on different substrates, and the effect of the refractive index of substrates on fabrication and optical properties was s...

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Main Authors: Jing Liu, Yushan Chen, Haoyuan Cai, Xiaoyi Chen, Changwei Li, Cheng-Fu Yang
Format: Article
Language:English
Published: MDPI AG 2015-05-01
Series:Materials
Subjects:
Online Access:http://www.mdpi.com/1996-1944/8/5/2688
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spelling doaj-07e5837ef18d429fba57e1cd86869f482020-11-24T21:57:48ZengMDPI AGMaterials1996-19442015-05-01852688269910.3390/ma8052688ma8052688Effect of Refractive Index of Substrate on Fabrication and Optical Properties of Hybrid Au-Ag Triangular Nanoparticle ArraysJing Liu0Yushan Chen1Haoyuan Cai2Xiaoyi Chen3Changwei Li4Cheng-Fu Yang5School of Information Engineering, Jimei University, Xiamen 361021, ChinaSchool of Information Engineering, Jimei University, Xiamen 361021, ChinaSchool of Information Engineering, Jimei University, Xiamen 361021, ChinaDepartment of Physics, National University of Singapore, Singapore 117551, SingaporeChina–Australia Joint Laboratory for Functional Nanomaterials, Xiamen University, Xiamen 361005, ChinaDepartment of Chemical and Materials Engineering, National University of Kaohsiung, No. 700, Kaohsiung University Rd., Nan-Tzu District, Kaohsiung 811, TaiwanIn this study, the nanosphere lithography (NSL) method was used to fabricate hybrid Au-Ag triangular periodic nanoparticle arrays. The Au-Ag triangular periodic arrays were grown on different substrates, and the effect of the refractive index of substrates on fabrication and optical properties was systematically investigated. At first, the optical spectrum was simulated by the discrete dipole approximation (DDA) numerical method as a function of refractive indexes of substrates and mediums. Simulation results showed that as the substrates had the refractive indexes of 1.43 (quartz) and 1.68 (SF5 glass), the nanoparticle arrays would have better refractive index sensitivity (RIS) and figure of merit (FOM). Simulation results also showed that the peak wavelength of the extinction spectra had a red shift when the medium’s refractive index n increased. The experimental results also demonstrated that when refractive indexes of substrates were 1.43 and 1.68, the nanoparticle arrays and substrate had better adhesive ability. Meanwhile, we found the nanoparticles formed a large-scale monolayer array with the hexagonally close-packed structure. Finally, the hybrid Au-Ag triangular nanoparticle arrays were fabricated on quartz and SF5 glass substrates and their experiment extinction spectra were compared with the simulated results.http://www.mdpi.com/1996-1944/8/5/2688discrete dipole approximation (DDA)nanosphere lithography (NSL)hybrid Au-Ag nanoparticlessubstrate refractive index
collection DOAJ
language English
format Article
sources DOAJ
author Jing Liu
Yushan Chen
Haoyuan Cai
Xiaoyi Chen
Changwei Li
Cheng-Fu Yang
spellingShingle Jing Liu
Yushan Chen
Haoyuan Cai
Xiaoyi Chen
Changwei Li
Cheng-Fu Yang
Effect of Refractive Index of Substrate on Fabrication and Optical Properties of Hybrid Au-Ag Triangular Nanoparticle Arrays
Materials
discrete dipole approximation (DDA)
nanosphere lithography (NSL)
hybrid Au-Ag nanoparticles
substrate refractive index
author_facet Jing Liu
Yushan Chen
Haoyuan Cai
Xiaoyi Chen
Changwei Li
Cheng-Fu Yang
author_sort Jing Liu
title Effect of Refractive Index of Substrate on Fabrication and Optical Properties of Hybrid Au-Ag Triangular Nanoparticle Arrays
title_short Effect of Refractive Index of Substrate on Fabrication and Optical Properties of Hybrid Au-Ag Triangular Nanoparticle Arrays
title_full Effect of Refractive Index of Substrate on Fabrication and Optical Properties of Hybrid Au-Ag Triangular Nanoparticle Arrays
title_fullStr Effect of Refractive Index of Substrate on Fabrication and Optical Properties of Hybrid Au-Ag Triangular Nanoparticle Arrays
title_full_unstemmed Effect of Refractive Index of Substrate on Fabrication and Optical Properties of Hybrid Au-Ag Triangular Nanoparticle Arrays
title_sort effect of refractive index of substrate on fabrication and optical properties of hybrid au-ag triangular nanoparticle arrays
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2015-05-01
description In this study, the nanosphere lithography (NSL) method was used to fabricate hybrid Au-Ag triangular periodic nanoparticle arrays. The Au-Ag triangular periodic arrays were grown on different substrates, and the effect of the refractive index of substrates on fabrication and optical properties was systematically investigated. At first, the optical spectrum was simulated by the discrete dipole approximation (DDA) numerical method as a function of refractive indexes of substrates and mediums. Simulation results showed that as the substrates had the refractive indexes of 1.43 (quartz) and 1.68 (SF5 glass), the nanoparticle arrays would have better refractive index sensitivity (RIS) and figure of merit (FOM). Simulation results also showed that the peak wavelength of the extinction spectra had a red shift when the medium’s refractive index n increased. The experimental results also demonstrated that when refractive indexes of substrates were 1.43 and 1.68, the nanoparticle arrays and substrate had better adhesive ability. Meanwhile, we found the nanoparticles formed a large-scale monolayer array with the hexagonally close-packed structure. Finally, the hybrid Au-Ag triangular nanoparticle arrays were fabricated on quartz and SF5 glass substrates and their experiment extinction spectra were compared with the simulated results.
topic discrete dipole approximation (DDA)
nanosphere lithography (NSL)
hybrid Au-Ag nanoparticles
substrate refractive index
url http://www.mdpi.com/1996-1944/8/5/2688
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