Study of collective radial breathing-like modes in double-walled carbon nanotubes: combination of continuous two-dimensional membrane theory and Raman spectroscopy

被引:5
|
作者
Levshov, Dmitry I. [1 ]
Avramenko, Marina V. [1 ]
Than, Xuan-Tinh [2 ,3 ]
Michel, Thierry [2 ,3 ]
Arenal, Raul [4 ,5 ]
Paillet, Matthieu [2 ,3 ]
Rybkovskiy, Dmitry V. [1 ]
Osadchy, Alexander V. [6 ,7 ]
Rochal, Sergei B. [1 ]
Yuzyuk, Yuri I. [1 ]
Sauvajol, Jean-Louis [2 ,3 ]
机构
[1] Southern Fed Univ, Fac Phys, 5 Zorge St, Rostov Na Donu 344090, Russia
[2] Univ Montpellier 2, Lab Charles Coulomb, F-34095 Montpellier, France
[3] CNRS, Lab Charles Coulomb, F-34095 Montpellier, France
[4] Univ Zaragoza, Inst Nanociencia Aragon, Lab Microscopias Avanzadas, E-50018 Zaragoza, Spain
[5] ARAID Fdn, E-50018 Zaragoza, Spain
[6] Russian Acad Sci, AM Prokhorov Gen Phys Inst, 38 Vavilov St, Moscow 119991, Russia
[7] Natl Res Nucl Univ, MEPhI Moscow Engn Phys Inst, 31 Kashirskoye Shosse, Moscow 115409, Russia
关键词
individual double-walled carbon nanotubes; radial breathing-like modes; interlayer coupling; Raman spectroscopy;
D O I
10.1117/1.JNP.10.012502
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Radial breathing modes (RBMs) are widely used for the atomic structure characterization and index assignment of single-walled carbon nanotubes (SWNTs) from resonant Raman spectroscopy. However, for double-walled carbon nanotubes (DWNTs), the use of conventional omega(RBM)(d) formulas is complicated due to the van der Waals interaction between the layers, which strongly affects the frequencies of radial modes and leads to new collective vibrations. This paper presents an alternative way to theoretically study the collective radial breathing-like modes (RBLMs) of DWNTs and to account for interlayer interaction, namely the continuous two-dimensional membrane theory. We obtain an analytical omega(RBLM)(d(o), d(i)) relation, being the equivalent of the conventional omega(RBM)(d) expressions, established for SWNTs. We compare our theoretical predictions with Raman data, measured on individual index-identified suspended DWNTs, and find a good agreement between experiment and theory. Moreover, we show that the interlayer coupling in individual DWNTs strongly depends on the interlayer distance, which is manifested in the frequency shifts of the RBLMs with respect to the RBMs of the individual inner and outer tubes. In terms of characterization, this means that the combination of Raman spectroscopy data and predictions of continuous membrane theory may give additional criteria for the index identification of DWNTs, namely the interlayer distance. (C) 2015 Society of Photo-Optical Instrumentation Engineers (SPIE)
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页数:7
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