Anti-Stokes Raman spectroscopy as amethod to identify the metallic and semiconducting configurations of double-walled carbon nanotubes

被引:5
作者
Baibarac, Mihaela [1 ]
Baltog, Ioan [1 ]
Matea, Adelina [1 ]
Mihut, Lucian [1 ]
Lefrant, Serge [2 ]
机构
[1] Natl Inst Mat Phys, R-77125 Bucharest, Romania
[2] Inst Mat Jean Rouxel, F-44322 Nantes, France
关键词
Raman spectroscopy; SERS effect; double-walled carbon nanotubes; radial breathing mode (RBM); anti-Stokes Raman emission; CHEMICAL-VAPOR-DEPOSITION; DIAMETER DISTRIBUTION; SCATTERING;
D O I
10.1002/jrs.4597
中图分类号
O433 [光谱学];
学科分类号
0703 ; 070302 ;
摘要
Although Raman spectra reveal, as a signature of double-walled carbon nanotubes (DWCNTs), two radial breathing mode (RBM) lines associated with the inner and outer tubes, the specification of their nature as metallic or semiconducting remains a topic for debate. Investigating the spectral range of the RBM lines, we present a new procedure of the indexing of the semiconducting or metallic nature of the inner and outer shell that forms the DWCNT. The procedure exploits the difference between the intensities of recorded anti-Stokes Raman spectrum and the anti-Stokes spectrum calculated by applying the Boltzmann formulae to the recorded Stokes spectrum. The results indicate that the two spectra do not coincide with what should happen in a normal Raman process, namely, that there are RBM lines of the same intensity in both spectra, as well as RBM lines of higher intensity that are observed in the calculated spectrum. This discrepancy results from the surface-enhanced Raman scattering mechanism that operates differently on metallic or semiconducting nanotubes. In this context, the analysis of the RBM spectrum can reveal pairs of lines associated with the inner/outer shell structure of DWCNT, and when the intensities between the recorded and calculated spectra coincide, the nanotube is metallic; otherwise, the nanotube is semiconducting. Copyright (c) 2014 John Wiley & Sons, Ltd.
引用
收藏
页码:32 / 38
页数:7
相关论文
共 41 条
[1]   Measurement of the Surface-Enhanced Coherent Anti-Stokes Raman Scattering (SECARS) Due to the 1574 cm-1 Surface-Enhanced Raman Scattering (SERS) Mode of Benzenethiol Using Low-Power (<20 mW) CW Diode Lasers [J].
Aggarwal, Roshan L. ;
Farrar, Lewis W. ;
Greeneltch, Nathan G. ;
Van Duyne, Richard P. ;
Polla, Dennis L. .
APPLIED SPECTROSCOPY, 2013, 67 (02) :132-135
[2]   Nonlinear features of surface-enhanced Raman scattering revealed under non-resonant and resonant optical excitation [J].
Baibarac, M. ;
Baltog, I. ;
Mihut, L. ;
Matea, A. ;
Lefrant, S. .
JOURNAL OF OPTICS, 2014, 16 (03)
[3]   New features in the anti-Stokes and Stokes Raman spectra of single-walled carbon nanotubes that are highly separated into their semiconducting and metallic nanotube components [J].
Baibarac, Mihaela ;
Baltog, Ioan ;
Mihut, Lucian ;
Lefrant, Serge .
JOURNAL OF RAMAN SPECTROSCOPY, 2014, 45 (05) :323-331
[4]   Coherent anti-Stokes Raman scattering on single-walled carbon nanotube thin films excited through surface plasmons [J].
Baltog, I ;
Baibarac, M ;
Lefrant, S .
PHYSICAL REVIEW B, 2005, 72 (24)
[5]   Diameter-selective resonant Raman scattering in double-wall carbon nanotubes [J].
Bandow, S ;
Chen, G ;
Sumanasekera, GU ;
Gupta, R ;
Yudasaka, M ;
Iijima, S ;
Eklund, PC .
PHYSICAL REVIEW B, 2002, 66 (07) :754161-754168
[6]   Raman scattering study of double-wall carbon nanotubes derived from the chains of fullerenes in single-wall carbon nanotubes [J].
Bandow, S ;
Takizawa, M ;
Hirahara, K ;
Yudasaka, M ;
Iijima, S .
CHEMICAL PHYSICS LETTERS, 2001, 337 (1-3) :48-54
[7]   Raman spectroscopy of double-walled carbon nanotubes treated with H2SO4 [J].
Barros, E. B. ;
Son, H. ;
Samsonidze, Ge. G. ;
Souza Filho, A. G. ;
Saito, R. ;
Kim, Y. A. ;
Muramatsu, H. ;
Hayashi, T. ;
Endo, M. ;
Kong, J. ;
Dresselhaus, M. S. .
PHYSICAL REVIEW B, 2007, 76 (04)
[8]   Determination of the inner diameter of a double-walled carbon nanotube from its Raman spectra [J].
Basirjafari, Sedigheh ;
Khadem, Siamak Esmaielzadeh ;
Malekfar, Rasoul .
JOURNAL OF APPLIED PHYSICS, 2013, 113 (06)
[9]   Characterization methods of carbon nanotubes: a review [J].
Belin, T ;
Epron, F .
MATERIALS SCIENCE AND ENGINEERING B-SOLID STATE MATERIALS FOR ADVANCED TECHNOLOGY, 2005, 119 (02) :105-118
[10]   Anti-Stokes Raman spectra of single-walled carbon nanotubes [J].
Brown, SDM ;
Corio, P ;
Marucci, A ;
Dresselhaus, MS ;
Pimenta, MA ;
Kneipp, K .
PHYSICAL REVIEW B, 2000, 61 (08) :R5137-R5140