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INTRODUCTION

Published online by Cambridge University Press:  14 February 2014

Joshua A. Robinson
Affiliation:
The Pennsylvania State University
Mauricio Terrones
Affiliation:
The Pennsylvania State University, and Shinshu University, Japan
Joshua Golberger
Affiliation:
The Ohio State University
John J. Boeckl
Affiliation:
Air Force Research Laboratory
Chakrapani Varanasi
Affiliation:
US Army Research Office
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Abstract

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Type
Graphene and Beyond
Copyright
Copyright © Materials Research Society 2014 

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References

REFERENCES

Kroto, H.W., Heath, J.R., O’Brien, S.C., Curl, R.F., and Smalley, R.E.: C60: Buckminsterfullerene. Nature 318, 162163 (1985).CrossRefGoogle Scholar
Iijima, S.: Helical microtubules of graphitic carbon. Nature 354, 5658 (1991).Google Scholar
Novoselov, K.S., Geim, A.K., Morozov, S.V., Jiang, D., Zhang, Y., and Dubonos, S.V.: Electric field effect in atomically thin carbon films. Science 306, 666669 (2004).Google Scholar
Schwierz, F.: Graphene transistors. Nat. Nanotechnol. 5, 487496 (2010).Google Scholar
Geim, A.K. and Novoselov, K.S.: The rise of graphene. Nat. Mater. 6, 183191 (2007).Google Scholar
Cooper, D.R., D’Anjou, B., Ghattamaneni, N., Harack, B., Hilke, M., and Horth, A.: Experimental review of graphene. Condens. Matter Phys. 2012, 156 (2012).Google Scholar
Geim, A.K.: Graphene: Status and prospects. Science 324, 15301534 (2009).Google Scholar
Dreyer, D.R., Park, S., Bielawski, C.W., and Ruoff, R.S.: The chemistry of graphene oxide. Chem. Soc. Rev. 39, 228240 (2010).CrossRefGoogle ScholarPubMed
Allen, M.J., Tung, V.C., and Kaner, R.B.: Honeycomb carbon: A review of graphene. Chem. Rev. 110, 132145 (2010).Google Scholar
Avouris, P.: Graphene: Electronic and photonic properties and devices. Nano Lett. 10, 42854294 (2010).Google Scholar
Grigorenko, A.N., Polini, M., and Novoselov, K.S.: Graphene plasmonics. Nat. Photonics 6, 749758 (2012).Google Scholar
Shao, Y., Wang, J., Wu, H., Liu, J., Aksay, I.A., and Lin, Y.: Graphene based electrochemical sensors and biosensors: A review. Electroanalysis 22, 10271036 (2010).CrossRefGoogle Scholar
Stankovich, S., Dikin, D.A., Dommett, G.H.B., Kohlhaas, K.M., Zimney, E.J., and Stach, E.A.: Graphene-based composite materials. Nature 442, 282286 (2006).Google Scholar
Singh, V., Joung, D., Zhai, L., Das, S., Khondaker, S.I., and Seal, S.: Graphene based materials: Past, present and future. Prog. Mater. Sci. 56, 11781271 (2011).Google Scholar
Wang, Q.H., Kalantar-Zadeh, K., Kis, A., Coleman, J.N., and Strano, M.S.: Electronics and optoelectronics of two-dimensional transition metal dichalcogenides. Nat. Nanotechnol. 7, 699712 (2012).Google Scholar
Chhowalla, M., Shin, H.S., Eda, G., Li, L-J, Loh, K.P., and Zhang, H.: The chemistry of two-dimensional layered transition metal dichalcogenide nanosheets. Nat. Chem. 5, 263275 (2013).CrossRefGoogle ScholarPubMed
Bresnehan, M.S., Hollander, M.J., Wetherington, M., LaBella, M., Trumbull, K.A., and Cavalero, R.: Integration of hexagonal boron nitride with quasi-freestanding epitaxial graphene: Toward wafer-scale, high-performance devices. ACS Nano 6, 52345241 (2012).Google Scholar
Lee, G-H, Yu, Y-J, Cui, X., Petrone, N., Lee, C-H, and Choi, M.S.: Flexible and transparent MoS2 field-effect transistors on hexagonal boron titride-graphene heterostructures. ACS Nano 7, 79317936 (2013).Google Scholar
Radisavljevic, B., Radenovic, A., Brivio, J., Giacometti, V., and Kis, A.: Single-layer MoS2 transistors. Nat. Nanotechnol. 6, 147150 (2011).Google Scholar
Gutiérrez, H.R., Perea-López, N., Elías, A.L., Berkdemir, A., Wang, B., and Lv, R.: Extraordinary room-temperature photoluminescence in triangular WS2 monolayers. Nano Lett. 13, 34473454 (2013).Google Scholar
Lalmi, B., Oughaddou, H., Enriquez, H., Kara, A., Vizzini, S., and Ealet, B.: Epitaxial growth of a silicene sheet. Appl. Phys. Lett. 97, 223109 (2010).Google Scholar