[1]
A. K. Geim and K. S. Novoselov: Nature Materials Vol.6 (2007), pp.183-191.
Google Scholar
[2]
K.S. Novoselov, A.K. Geim, S.V. Morozov, D. Jiang, Y. Zhang, S.V. Dubonos, I.V. Grigorieva and A.A. Firsov: Science Vol.306 (2004), pp.666-669.
DOI: 10.1126/science.1102896
Google Scholar
[3]
K. I. Bolotin, K. J. Sikes, Z. Jiang, M. Klima, G. Fudenberg, J. Hone, P. Kim and H. L. Stormer: Solid State Communications Vol.146 (2008), pp.351-355.
DOI: 10.1016/j.ssc.2008.02.024
Google Scholar
[4]
A.A. Balandin, S. Ghosh, W. Bao, I. Calizo, D. Teweldebrhan, F. Miao and C. N. Lau: Nano Letters Vol.8 (2008), p.902.
DOI: 10.1021/nl0731872
Google Scholar
[5]
C. Lee, X. Wei, J. W. Kysar and J. Hone: Science Vol.321 (2008), pp.385-388.
Google Scholar
[6]
H. Yenny, N. Valeria, L. Mustafa, F. M. Blighe, S. Zhenyu, D. Sukanta, I. T. Mcgovern, H. Brendan, B. Michele and Y. K. Gun'Ko: Nature Nanotechnology Vol.3 (2008), pp.563-568.
Google Scholar
[7]
A. I. A. Ibraheim: Carbon Vol.94 (2015), pp.369-377.
Google Scholar
[8]
L. Xuesong, C. Weiwei, A. Jinho, K. Seyoung, N. Junghyo, Y. Dongxing, P. Richard, V. Aruna, J. Inhwa and T. Emanuel: Science Vol.324 (2009), pp.1312-1314.
Google Scholar
[9]
M. Choucair, P. Thordarson and J. A. Stride: Nature Nanotechnology Vol.4 (2008), p.30.
Google Scholar
[10]
S. Pei and H.-M. Cheng: Carbon Vol.50 (2012), pp.3210-3228.
Google Scholar
[11]
A. P. Kauling, A. T. Seefeldt, D. P. Pisoni, R. C. Pradeep, R. Bentini, R. V. B. Oliveira, K. S. Novoselov and A. H. Castro Neto: Advanced Materials Vol.30 (2018), p.1803784.
DOI: 10.1002/adma.201803784
Google Scholar
[12]
International Organization for Standardization (ISO), in Nanotechnologies-Vocabulary-Part 13: Graphene and Related Two-Dimensional (2D) Materials,BSI Standards Publication, London, UK (2017).
Google Scholar
[13]
H. Kim, A. A. Abdala and C. W. Macosko: Macromolecules Vol.43 (2010), pp.6515-6530.
Google Scholar
[14]
F. Meng, W. Lu, Q. Li, J.-H. Byun, Y. Oh and T.-W. Chou: Advanced Materials Vol.27 (2015), pp.5113-5131.
Google Scholar
[15]
Z. Xu and C. Gao: Macromolecules Vol.43 (2010), pp.6716-6723.
Google Scholar
[16]
U. Khan, K. Young, A. O'Neill and J. N. Coleman: Journal of Materials Chemistry Vol.22 (2012), pp.12907-12914.
Google Scholar
[17]
W. Wu, H. Zhang, H. Ma, J. Cao, L. Jiang and G. Chen: Journal of Engineered Fibers and Fabrics Vol.12 (2017), p.155892501701200301.
Google Scholar
[18]
X. Hu, J. Li and Y. Bai: Materials Letters Vol.194 (2017), pp.224-226.
Google Scholar
[19]
D.G. Goodwin, A.S. Adeleye, L. Sung, K.T. Ho, R.M. Burgess and E.J. Petersen: Environmental Science & Technology Vol.52 (2018), pp.4491-4513.
Google Scholar
[20]
X. Hu, G. Yue and F. Zhong: Carbon Vol.109 (2016), pp.65-73.
Google Scholar
[21]
S. Stankovich, D. A. Dikin, G. H. Dommett, K. M. Kohlhaas, E. J. Zimney, E. A. Stach, R. D. Piner, S. T. Nguyen and R. S. Ruoff: Nature Vol.442 (2006), p.282.
DOI: 10.1038/nature04969
Google Scholar
[22]
S. M. M. Osman: Journal of Materials Science Vol.52 (2017), pp.5928-5937.
Google Scholar
[23]
S. Niyogi, E. Bekyarova, M. E. Itkis, H. Zhang, K. Shepperd, J. Hicks, M. Sprinkle, C. Berger, C. N. Lau and W. A. Deheer: Nano Letters Vol.10 (2010), p.4061.
DOI: 10.1021/nl1021128
Google Scholar
[24]
D. A. Jasim, N. Lozano and K. Kostarelos: 2d Materials Vol.3 (2016), p.
Google Scholar
[25]
P. F. Nogueira, D. Nakabayashi and V. Zucolotto: Aquatic Toxicology Vol.166 (2015), pp.29-35.
Google Scholar
[26]
C. Ren, X. Hu, X. Li and Q. Zhou: Biomaterials Vol.93 (2016), pp.83-94.
Google Scholar
[27]
V. Mittal and L. Krauss: Colloid & Polymer Science Vol.292 (2014), pp.2509-2518.
Google Scholar