18
2 Production of Advanced Materials in Molten Salts
70. J. Wang, B. Ding, X. Hao, Y. Xu, Y. Wang, L. Shen, H. Dou, X. Zhang, A modified moltensalt method to prepare graphene electrode with high capacitance and low self-discharge rate.
Carbon 102, 255–261 (2016)
71. P. Yu, S.E. Lowe, G.P. Simon, Y.L. Zhong, Electrochemical exfoliation of graphite and
production of functional graphene. Curr. Opin. Colloid Interface Sci. 20, 329–338 (2015)
72. J.M. Munuera, J.I. Paredes, S. Villar-Rodil, A. Martínez-Alonso, J.M.D. Tascón, A simple
strategy to improve the yield of graphene nanosheets in the anodic exfoliation of graphite foil.
Carbon 115, 625–628 (2017)
73. L. Hu, X. Peng, Y. Li, L. Wang, K. Huo, L.Y.S. Lee, K.Y. Wong, P.K. Chu, Direct anodic
exfoliation of graphite onto high-density aligned graphene for large capacity supercapacitors.
Nano Energy 34, 515–523 (2017)
74. A.T. Najafabadi, E. Gyenge, High-yield graphene production by electrochemical exfoliation
of graphite: Novel ionic liquid (IL)–acetonitrile electrolyte with low IL content. Carbon 71,
58–69 (2014)
75. Y. Zhang, Y. Xu, J. Zhu, L. Li, X. Du, X. Sun, Electrochemically exfoliated high-yield graphene
in ambient temperature molten salts and its application for flexible solid-state supercapacitors.
Carbon 127, 392–403 (2018)
76. C.T.J. Low, F.C. Walsh, M.H. Chakrabarti, M.A. Hashim, M.A. Hussai, Electrochemical
approaches to the production of graphene flakes and their potential applications, Carbon 54,
1–21 (2013)
77. H. Lei, J. Tu, Z. Yu, S. Jiao, Exfoliation mechanism of graphite cathode in ionic liquids. ACS
Appl. Mater. Interfaces. 9, 36702–36707 (2017)
78. W. Wu, C. Zhang, S. Hou, Electrochemical exfoliation of graphene and graphene analogous
2D nanosheets. J. Mater. Sci. 52, 10649–10660 (2017)
79. A.R. Kamali C. Schwandt, D.J. Fray, Effect of the graphite electrode material on the
characteristics, Mater. Charact. 62, 987–994 (2011)
80. A.R. Kamali, D.J. Fray, Towards large scale preparation of carbon nanostructures in molten
LiCl. Carbon 77, 835–845 (2014)
81. A. Rezaei, A.R. Kamali, Green production of carbon nanomaterials in molten salts, mechanisms
and applications. Diam. Relat. Mater. 83, 146–161 (2018)
82. A.R. Kamali, D.J. Fray, Electrochemical interaction between graphite and molten salts to
produce nanotubes, nanoparticles, graphene and nanodiamonds. J. Mater. Sci. 51, 569–576
(2016)
2 Production of Advanced Materials in Molten Salts
70. J. Wang, B. Ding, X. Hao, Y. Xu, Y. Wang, L. Shen, H. Dou, X. Zhang, A modified moltensalt method to prepare graphene electrode with high capacitance and low self-discharge rate.
Carbon 102, 255–261 (2016)
71. P. Yu, S.E. Lowe, G.P. Simon, Y.L. Zhong, Electrochemical exfoliation of graphite and
production of functional graphene. Curr. Opin. Colloid Interface Sci. 20, 329–338 (2015)
72. J.M. Munuera, J.I. Paredes, S. Villar-Rodil, A. Martínez-Alonso, J.M.D. Tascón, A simple
strategy to improve the yield of graphene nanosheets in the anodic exfoliation of graphite foil.
Carbon 115, 625–628 (2017)
73. L. Hu, X. Peng, Y. Li, L. Wang, K. Huo, L.Y.S. Lee, K.Y. Wong, P.K. Chu, Direct anodic
exfoliation of graphite onto high-density aligned graphene for large capacity supercapacitors.
Nano Energy 34, 515–523 (2017)
74. A.T. Najafabadi, E. Gyenge, High-yield graphene production by electrochemical exfoliation
of graphite: Novel ionic liquid (IL)–acetonitrile electrolyte with low IL content. Carbon 71,
58–69 (2014)
75. Y. Zhang, Y. Xu, J. Zhu, L. Li, X. Du, X. Sun, Electrochemically exfoliated high-yield graphene
in ambient temperature molten salts and its application for flexible solid-state supercapacitors.
Carbon 127, 392–403 (2018)
76. C.T.J. Low, F.C. Walsh, M.H. Chakrabarti, M.A. Hashim, M.A. Hussai, Electrochemical
approaches to the production of graphene flakes and their potential applications, Carbon 54,
1–21 (2013)
77. H. Lei, J. Tu, Z. Yu, S. Jiao, Exfoliation mechanism of graphite cathode in ionic liquids. ACS
Appl. Mater. Interfaces. 9, 36702–36707 (2017)
78. W. Wu, C. Zhang, S. Hou, Electrochemical exfoliation of graphene and graphene analogous
2D nanosheets. J. Mater. Sci. 52, 10649–10660 (2017)
79. A.R. Kamali C. Schwandt, D.J. Fray, Effect of the graphite electrode material on the
characteristics, Mater. Charact. 62, 987–994 (2011)
80. A.R. Kamali, D.J. Fray, Towards large scale preparation of carbon nanostructures in molten
LiCl. Carbon 77, 835–845 (2014)
81. A. Rezaei, A.R. Kamali, Green production of carbon nanomaterials in molten salts, mechanisms
and applications. Diam. Relat. Mater. 83, 146–161 (2018)
82. A.R. Kamali, D.J. Fray, Electrochemical interaction between graphite and molten salts to
produce nanotubes, nanoparticles, graphene and nanodiamonds. J. Mater. Sci. 51, 569–576
(2016)
