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Graphene Fabrication Methods

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Graphene Fabrication Methods ( graphene-fabrication-methods )

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Graphene: Fabrication Methods, Properties, and Applications in Modern Industries DOI: http://dx.doi.org/10.5772/intechopen.92258 different applications: State-of-the-art. Surfaces and Interfaces. 2017;9:93-106 [20] Meysam TK, Ajay K, Emad O, Chngsoo K, Pradeep R. Synthesis, characterization, and properties of graphene reinforced metal-matrix nanocomposites. Composites Part B Engineering. 2020;183:107664 [21] Diana CCF. Low dimensional materials: Synthesis, characterization and applications [PhD thesis]. Universita Dellacalabria, Italy; 2017 [22] Robert CS, James LS, Peter VC. Micromechanical exfoliation of graphene on the atomistic scale. Physical Chemistry Chemical Physics. 2019;21:5716 [23] Alexandre A, Samuel MV, Miguel CL, Eugenio C. Graphene related magnetic materials: Micromechanical exfoliation of 2D layered magnets based on bimetallic anilate complexes with inserted [FeIII(acac2-trien)]+ and [FeIII(sal2-trien)]+ molecules. Chemical Science. 2015;6:4665 [24] Xu C, Chenzhen Z, Rui H, Yanglong H. Liquid-phase exfoliation, functionalization and applications of graphene. Nanoscale. 2011;3:2118-2126 [25] Majid M. Liquid-phase exfoliation (LPE) of graphite towards graphene: An ab initio study. Journal of Molecular Liquids. 2017;230:461-472 [26] Alan PK, Andressa TS, Diego PP, Roshini CP, Ricardo B, Ricardo VBO, et al. The worldwide graphene flake production. Advanced Materials. 2018;30:1-6.1803784 [27] Mattevi C, Kim H, Chhowalla M. A review of chemical vapour deposition of graphene on copper. Journal of Materials Chemistry. 2011;21:3324-3334 [28] Piran RK, Caterina D, Bruno D, Damian G, Robert SW, Marie-Blandine M, et al. The parameter space of graphene chemical vapor deposition on polycrystalline Cu. Journal of Physical Chemistry C. 2012;42:22492-22501 [29] Available from: http://news.mit. edu/2015/explained-chemical-vapor- deposition-0619 [30] Yunfeng L, Yanjie H, Hao J, Chunzhong L. Double-faced g-Fe2O3||SiO2 nanohybrids: Flame synthesis, in situ selective modification and highly interfacial activity. Nanoscale. 2013;5:5360-5367 [31] Kammler HK, Madler L, Pratsinis SE. Flame synthesis of nanoparticles. Chemical Engineering & Technology. 2001;24:583-596 [32] Nasir KM, Stephen DT, Jafar FAS, Hisato Y, Alem-Mar BG, Bernard HK, et al. Flame synthesis of graphene films in open environments. Carbon. 2011;49:5064-5070 [33] Tite T, Donnet C, Loir AS, Reynaud S, Michalon JY, Vocanson F, et al. Graphene-based textured surface by pulsed laser deposition as a robust platform for surface enhanced Raman scattering applications. Applied Physics Letters. 2014;104:041912 [34] Margus K, Artjom B, Tauno K, Tea A, Aarne K, Ahti N, et al. Highly sensitive NO2 sensors by pulsed laser deposition on graphene. Applied Physics Letters. 2016;109:113108 [35] Brahim A, Nasir KM, Adnan A, Marwan KK. Recent progress in the growth and applications of graphene as a smart material: A review. Frontiers in Materials. 2015;2:1-19 [36] Bonaccorso F, Sun Z, Hasan T, Ferrari AC. Graphene photonics and optoelectronics. Nature Photonics. 2010;4:611-622 13

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