97
Views
9
CrossRef citations to date
0
Altmetric
Articles

Formation of binocular-like structure using graphene nanosheet and carbon nanotubes

, , , &
Pages 200-205 | Received 21 Feb 2017, Accepted 29 Jul 2017, Published online: 09 Aug 2017

References

  • Novoselov KS, Geim AK, Morozov SV, et al. Electric field effect in atomically thin carbon films. Science. 2004;306(5696):666–669.10.1126/science.1102896
  • Meyer JC, Geim AK, Katsnelson MI, et al. The structure of suspended graphene sheets. Nature. 2007;446(7131):60.10.1038/nature05545
  • Castro Neto AH, Guinea F, Peres NMR, et al. The electronic properties of graphene. Rev Mod Phys. 2009;81(1):109.
  • Lee C, Wei X, Kysar JW, et al. Measurement of the elastic properties and intrinsic strength of monolayer graphene. Science. 2008;321(5887):385–388.10.1126/science.1157996
  • Geim AK, Novoselovv KS. The rise of graphene. Nat Mater. 2007;6(3):183–191.
  • Zhu Y, Murali S, Cai W, et al. Graphene and graphene oxide: synthesis, properties, and applications. Adv Mater. 2010;22(35):3906–3924.10.1002/adma.201001068
  • Li X, Cai W, An J, et al. Large-area synthesis of high-quality and uniform graphene films on copper foils. Science. 2009;324(5932):1312–1314.10.1126/science.1171245
  • Kim KS, Zhao Y, Jang H, et al. Large-scale pattern growth of graphene films for stretchable transparent electrodes. Nature. 2009;457(7230):706.10.1038/nature07719
  • Seol JH, Jo I, Moore AL, et al. Two-dimensional phonon transport in supported graphene. Science. 2010;328(5975):213–216.10.1126/science.1184014
  • Savini G, Dappe YJ, Oberg S, et al. Bending modes, elastic constants and mechanical stability of graphitic systems. Carbon. 2011;49(1):62–69. 10.1016/j.carbon.2010.08.042
  • Nair RR, Blake P, Grigorenko AN, et al. Fine structure constant defines visual transparency of graphene. Science. 2008;320(5881):1308.10.1126/science.1156965
  • Stoller MD, Park S, Zhu Y, et al. Graphene-based ultracapacitors. Nano Lett. 2008;8(10):3498–3502.
  • Yang K, Zhang S, Zhang G, et al. Graphene in mice: ultrahigh in vivo tumor uptake and efficient photothermal therapy. Nano Lett. 2010;10(9):3318–3323.10.1021/nl100996u
  • Xia D, Xue QZ, Xie J, et al. Silicon/graphene core/shell nanowires produced by self-scrolling. Comput Mater Sci. 2010;49(3):588–592.10.1016/j.commatsci.2010.05.053
  • Daff TD, Collins SP, Dureckova H, et al. Evaluation of carbon nanoscroll materials for post-combustion CO2 capture. Carbon. 2016;101:218–225.10.1016/j.carbon.2016.01.072
  • Zhang Z, Li T. Carbon nanotube initiated formation of carbon nanoscrolls. Appl Phys Lett. 2010;97(8):283.
  • Song HY, Geng SF, An MR, et al. Atomic simulation of the formation and mechanical behavior of carbon nanoscrolls. J Appl Phys. 2013;113(16):666.
  • Zhang Z, Huang YJ, Li T. Buckling instability of carbon nanoscrolls. J Appl Phys. 2012;112(6):063515.10.1063/1.4754312
  • Chen Y, Lu J, Gao ZX. Structural and electronic study of nanoscrolls rolled up by a single graphene sheet. J Phys Chem C. 2007;111(4):1625–1630.10.1021/jp066030r
  • Pan H, Feng Y, Lin J. Ab initio study of electronic and optical properties of multiwall carbon nanotube structures made up of a single rolled-up graphite sheet. Phys Rev B. 2005;72(8):085415.10.1103/PhysRevB.72.085415
  • Peng XA, Zhou J, Wang WC, et al. Computer simulation for storage of methane and capture of carbon dioxide in carbon nanoscrolls by expansion of interlayer spacing. Carbon 48 (13)(2010) 3760–3768.
  • Mpourmpakis G, Tylianakis E, Froudakis GE. Carbon nanoscrolls: a promising material for hydrogen storage. Nano Lett. 2007;7(7):1893–1897.10.1021/nl070530u
  • Shi XH, Cheng Y, Pugno NM, et al. A translational nanoactuator based on carbon nanoscrolls on substrates. Appl Phys Lett. 2010;96(5):053115.10.1063/1.3302284
  • Cheng Y, Shi XH, Pugno NM, et al. Substrate-supported carbon nanoscroll oscillator. Phys E-Low-Dimens Syst Nanostruct. 2012;44(6):955–959.
  • Shi XH, Cheng Y, Pugno NM, et al. Tunable water channels with carbon nanoscrolls. Small. 2010;6(6):739–744.10.1002/smll.v6:6
  • Sunv H. COMPASS: an ab initio force-field optimized for condensed-phase applications-overview with details on alkane and benzene compounds. J Phys Chem B. 1998;102:7338–7364.
  • Bunte SW, Sun H. Molecular modeling of energetic materials: the parameterization and validation of nitrate esters in the COMPASS force field. J Phys Chem B. 2000;104:2477–2489. 10.1021/jp991786u
  • Li YF, Yu HQ, Li H, et al. Lamellar nanostructures of silicon heterogeneously solidified on graphite sheets. Appl Phys Lett. 2010;96:163113.10.1063/1.3407476
  • Li H, Knaup JM, Kaxiras E, et al. Stiffening of organosilicate glasses by organic cross-linking. Acta Mater. 2011;59:44–52. 10.1016/j.actamat.2010.08.015
  • Zheng QB, Geng Y, Wang SJ, et al. Effects of functional groups on the mechanical and wrinkling properties of graphene sheets. Carbon. 2010;48:4315–4322.10.1016/j.carbon.2010.07.044
  • Hunter CA, Sanders JKM. The nature of .pi.-.pi. interactions. J Am Chem Soc. 2009;112:5525–5534.
  • Mermin N, Wagner H. Absence of ferromagnetism or antiferromagnetism in one- or two-dimensional isotropic heisenberg models. Phys Rev Lett. 1966;17:1133.10.1103/PhysRevLett.17.1133
  • Jiang Y, Li H, Li Y, et al. Helical encapsulation of graphene nanoribbon into carbon nanotube. ACS Nano. 2011;5(3):2126–2133.10.1021/nn103317u
  • Andersen HC. Molecular dynamics simulations at constant pressure and/or temperature. J Chem Phys. 1980;72(4):2384–2393.10.1063/1.439486

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.