journal article Feb 07, 2014

Five Orders of Magnitude Reduction in Energy Coupling across Corrugated Graphene/Substrate Interfaces

View at Publisher Save 10.1021/am405388a
Topics

No keywords indexed for this article. Browse by subject →

References
44
[1]
Electric Field Effect in Atomically Thin Carbon Films

K. S. Novoselov, A. K. Geim, S. V. Morozov et al.

Science 2004 10.1126/science.1102896
[2]
Two-dimensional gas of massless Dirac fermions in graphene

K. S. Novoselov, A. K. Geim, S. V. Morozov et al.

Nature 2005 10.1038/nature04233
[3]
The rise of graphene

A. K. Geim, K. S. Novoselov

Nature Materials 2007 10.1038/nmat1849
[4]
Experimental observation of the quantum Hall effect and Berry's phase in graphene

Yuanbo Zhang, Yan-Wen Tan, Horst L. Stormer et al.

Nature 2005 10.1038/nature04235
[5]
Superior Thermal Conductivity of Single-Layer Graphene

Alexander A. Balandin, Suchismita Ghosh, Wenzhong Bao et al.

Nano Letters 2008 10.1021/nl0731872
[6]
Ghosh S. Appl. Phys. Lett. (2008) 10.1063/1.2907977
[7]
Lee J.-U. Phys. Rev. B (2011) 10.1103/physrevb.83.081419
[8]
Dimensional crossover of thermal transport in few-layer graphene

Suchismita Ghosh, Wenzhong Bao, Denis L. Nika et al.

Nature Materials 2010 10.1038/nmat2753
[10]
Thermal properties of graphene and nanostructured carbon materials

Alexander A. Balandin

Nature Materials 2011 10.1038/nmat3064
[11]
Bolotin K. I. Phys. Rev. Lett. (2008) 10.1103/physrevlett.101.096802
[12]
Du X. Nat. Nanotechnol. (2008) 10.1038/nnano.2008.199
[13]
Wu Y. Q. Appl. Phys. Lett. (2008) 10.1063/1.2889959
[14]
Chen Z. Appl. Phys. Lett. (2009) 10.1063/1.3245315
[15]
Hopkins P. E. Nano Lett. (2012) 10.1021/nl203060j
[16]
Koh Y. K. Nano Lett. (2010) 10.1021/nl101790k
[17]
Mak K. F. Appl. Phys. Lett. (2010) 10.1063/1.3511537
[18]
Yue Y. Small (2011) 10.1002/smll.201101598
[19]
Wang H. ACS Appl. Mater. Interfaces (2013) 10.1021/am3032772
[20]
Xu Z. J. Phys.: Condens. Matter (2012)
[21]
The structure of suspended graphene sheets

Jannik C. Meyer, A. K. Geim, M. I. Katsnelson et al.

Nature 2007 10.1038/nature05545
[22]
Geringer V. Phys. Rev. Lett. (2009) 10.1103/physrevlett.102.076102
[23]
Nair R. R. Science (2008) 10.1126/science.1156965
[24]
Graf D. Nano Lett. (2007) 10.1021/nl061702a
[25]
Zhang J. Nanoscale (2013) 10.1039/c3nr03913g
[26]
Fast Parallel Algorithms for Short-Range Molecular Dynamics

Steve Plimpton

Journal of Computational Physics 1995 10.1006/jcph.1995.1039
[27]
Young’s modulus of graphene: A molecular dynamics study

Jin-Wu Jiang, Jian-Sheng Wang, Baowen Li

Physical Review B 2009 10.1103/physrevb.80.113405
[28]
Watanabe H. Int. J. Thermophys. (2004) 10.1023/b:ijot.0000022336.83719.43
[29]
Tang X. PLoS One (2013) 10.1371/journal.pone.0058030
[30]
Yoon D. Phys. Rev. B (2009) 10.1103/physrevb.80.125422
[31]
Jung N. ACS Nano (2010) 10.1021/nn102227u
[32]
Bergman T. L. (2011)
[33]
Tang X. Opt. Express (2012) 10.1364/oe.20.014152
[34]
Bauer M. Microelectron. Eng. (2008) 10.1016/j.mee.2008.01.089
[35]
Zhang L. J. Phys. Chem. C (2008) 10.1021/jp802251h
[36]
Temperature Dependence of the Raman Spectra of Graphene and Graphene Multilayers

I. Calizo, A. A. Balandin, W. Bao et al.

Nano Letters 2007 10.1021/nl071033g
[37]
Allen M. J. Appl. Phys. Lett. (2008) 10.1063/1.3011030
[38]
Beechem T. Rev. Sci. Instrum. (2007) 10.1063/1.2738946
[39]
Brenner D. W. J. Phys.: Condens. Matter (2002)
[40]
Tersoff J. Phys. Rev. Lett. (1988) 10.1103/physrevlett.61.2879
[41]
Dodson B. W. Phys. Rev. B (1987) 10.1103/physrevb.35.2795
[42]
Xiao J. L. Nano Lett. (2009) 10.1021/nl9025488
[43]
Hertel T. Phys. Rev. B (1998) 10.1103/physrevb.58.13870
[44]
Ong Z. Y. Phys. Rev. B (2010) 10.1103/physrevb.81.155408
Metrics
58
Citations
44
References
Details
Published
Feb 07, 2014
Vol/Issue
6(4)
Pages
2809-2818
Cite This Article
Xiaoduan Tang, Shen Xu, Xinwei Wang (2014). Five Orders of Magnitude Reduction in Energy Coupling across Corrugated Graphene/Substrate Interfaces. ACS Applied Materials & Interfaces, 6(4), 2809-2818. https://doi.org/10.1021/am405388a