An effective surface-enhanced Raman scattering template based on a Ag nanocluster-ZnO nanowire array

被引:72
|
作者
Deng, S. [1 ]
Fan, H. M. [2 ]
Zhang, X. [1 ]
Loh, K. P. [1 ]
Cheng, C-L [3 ]
Sow, C. H. [2 ]
Foo, Y. L. [4 ]
机构
[1] Natl Univ Singapore, Dept Chem, Singapore 117543, Singapore
[2] Natl Univ Singapore, Dept Phys, Singapore 11754, Singapore
[3] Natl Dong Hwa Univ, Dept Phys, Hualien 97401, Taiwan
[4] ASTAR, Inst Mat Res & Engn, Singapore 117602, Singapore
关键词
OPTICAL-PROPERTIES; NANOPARTICLES; SPECTROSCOPY; MOLECULES; SILVER; SPECTRA; SERS; NANOCOMPOSITES; NANOCRYSTALS; WAVELENGTH;
D O I
10.1088/0957-4484/20/17/175705
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
An effective surface-enhanced Raman scattering (SERS) template based on a 3D hybrid Ag nanocluster (NC)-decorated ZnO nanowire array was fabricated through a simple process of depositing Ag NCs on ZnO nanowire arrays. The effects of particle size and excitation energy on the Raman scattering in these hybrid systems have been investigated using rhodamine 6G as a standard analyte. The results indicate that the hybrid nanosystem with 150 nm Ag NCs produces a larger SERS enhancement factor of 3.2 x 10(8), which is much higher than that of 10 nm Ag NCs (6.0 x 10(6)) under 532 nm excitation energy. The hybrid nanowire arrays were further applied to obtain SERS spectra of the two-photon absorption (TPA) chromophore T7. Finite-difference time-domain simulations reveal the presence of an enhanced field associated with inter-wire plasmon coupling of the 150 nm Ag NCs on adjacent ZnO nanowires; such a field was absent in the case of the 10 nm Ag NC-coated ZnO nanowire. Such hybrid nanosystems could be used as SERS substrates more effectively than assembled Ag NC film due to the enhanced light-scattering local field and the inter-wire plasmon-enhanced electromagnetic field.
引用
收藏
页数:7
相关论文
共 50 条
  • [1] An effective surface-enhanced Raman scattering template based on gold nanoparticle/silicon nanowire arrays
    王明利
    张常兴
    吴正龙
    井西利
    许海军
    Chinese Physics B, 2014, 23 (06) : 551 - 557
  • [2] An effective surface-enhanced Raman scattering template based on gold nanoparticle/silicon nanowire arrays
    Wang Ming-Li
    Zhang Chang-Xing
    Wu Zheng-Long
    Jing Xi-Li
    Xu Hai-Jun
    CHINESE PHYSICS B, 2014, 23 (06)
  • [3] Individual Ag Nanowire Dimer for Surface-Enhanced Raman Scattering
    Du, ChaoLing
    You, YuMeng
    Chen, Tao
    Zhu, Yan
    Hu, HaiLong
    Shi, DaNing
    Chen, HongYu
    Shen, ZeXiang
    PLASMONICS, 2011, 6 (04) : 761 - 766
  • [4] Individual Ag Nanowire Dimer for Surface-Enhanced Raman Scattering
    ChaoLing Du
    YuMeng You
    Tao Chen
    Yan Zhu
    HaiLong Hu
    DaNing Shi
    HongYu Chen
    ZeXiang Shen
    Plasmonics, 2011, 6 : 761 - 766
  • [5] Surface-enhanced Raman scattering from ordered Ag nanocluster arrays
    Schmidt, JP
    Cross, SE
    Buratto, SK
    JOURNAL OF CHEMICAL PHYSICS, 2004, 121 (21): : 10657 - 10659
  • [6] Hierarchical ZnO/Si nanowire arrays as an effective substrate for surface-enhanced Raman scattering application
    Huang, Shengli
    He, Bing
    Yan, Xiaolan
    Khan, Imran
    Wang, Jiayuan
    Gao, Mengyao
    Lan, Jinshen
    Li, Shuping
    Kang, Junyong
    SENSORS AND ACTUATORS B-CHEMICAL, 2018, 273 : 48 - 55
  • [7] Ag nanodot array as a platform for surface-enhanced Raman scattering
    Jung, Mi
    Kim, Seung Kyu
    Lee, Seok
    Kim, Jae Hun
    Woo, Deok Ha
    JOURNAL OF NANOPHOTONICS, 2013, 7
  • [8] Ag Nanodot Array as a Platform for Surface-Enhanced Raman Scattering
    Jung, M.
    Kim, S. K.
    Lee, S.
    Kim, J. H.
    Woo, D.
    NANO-BIO SENSING, IMAGING, AND SPECTROSCOPY, 2013, 8879
  • [9] Spectra of surface-enhanced Raman scattering of nanocluster NaXe
    Jiachang Liang
    Zhi Liu
    Liping Zhang
    Journal of Materials Science, 2006, 41 : 1859 - 1860
  • [10] ZnO/Ag composite nanoflowers as substrates for surface-enhanced Raman scattering
    Zhang, Guling
    Deng, Chaoyue
    Shi, Honglong
    Zou, Bin
    Li, Yongchao
    Liu, Tengteng
    Wang, Wenzhong
    APPLIED SURFACE SCIENCE, 2017, 402 : 154 - 160