Pressure-induced radial collapse in few-wall carbon nanotubes: A combined theoretical and experimental study

被引:28
作者
Alencar, R. S. [1 ,2 ]
Cui, Wenwen [1 ]
Torres-Dias, A. C. [1 ,2 ]
Cerqueira, Tiago F. T. [1 ,3 ]
Botti, Silvana [1 ,3 ,4 ]
Marques, Miguel A. L. [1 ,4 ,5 ]
Ferreira, O. P. [2 ]
Laurent, Ch [6 ]
Weibel, A. [6 ]
Machon, D. [1 ]
Dunstan, D. J. [7 ]
Souza Filho, A. G. [2 ]
San-Miguel, A. [1 ]
机构
[1] Univ Claude Bernard Lyon 1, Univ Lyon, CNRS, Inst Lumiere Mat, F-69622 Lyon, France
[2] Univ Fed Ceara, Dept Fis, BR-60455900 Fortaleza, Ceara, Brazil
[3] Friedrich Schiller Univ Jena, Inst Festkopertheorie & Opt, Max Wien Pl 1, D-07743 Jena, Germany
[4] European Theoret Spect Facil, D-06099 Halle, Germany
[5] Martin Luther Univ Halle Wittenberg, Inst Phys, D-06099 Halle, Germany
[6] Univ Toulouse, CNRS, CIRIMAT, INPT,UPS, Toulouse, France
[7] Queen Mary Univ London, Sch Phys & Astron, London E1 4NS, England
关键词
FUNCTIONAL TIGHT-BINDING; RAMAN-SPECTROSCOPY; SINGLE; TRANSITION; SCATTERING; BUNDLES; TUBES; WATER; DFT;
D O I
10.1016/j.carbon.2017.09.044
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
We study the pressure induced collapse of single-, double- and triple-wall carbon nanotubes. Theoretical simulations were performed using density-functional tight-binding theory. For tube walls separated by the graphitic distance, we show that the radial collapse pressure, P-c, is mainly determined by the diameter of the innermost tube, d(in) and that its value significantly deviates from the usual P-c proportional to d(in)(-3) Levy-Carrier law. A modified expression, P-c d(in)(-3) = alpha(1-beta(2) / d(in)(2)) with alpha and beta numerical parameters, which reduces the collapse pressure for low diameters is proposed. For d(in) greater than or similar to 1.5 nm an enhanced stability is found which may be assigned as due to the bundle intertube geometry-induced interactions. If the inner and outer tubes are separated by larger distances, the collapse process is found to be more complex. High-pressure resonant Raman experiments were performed in double-wall carbon nanotubes having inner and outer diameters averaging 1.5 nm and 2.0 nm, respectively. A modification in the response of the G-band and the disappearance of the radial breathing modes between 2 GPa and 5 GPa indicate the beginning and the end of the radial collapse process. Experimental results are in good agreement with our theoretical predictions, but do not allow to discriminate from those corresponding to a continuum mechanics model. (C) 2017 Elsevier Ltd. All rights reserved.
引用
收藏
页码:429 / 436
页数:8
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