162
8 Molten Salt-Assisted Preparation of Nanodiamonds at Atmospheric …
112. J. Yu, G. Liu, A.V. Sumant, V. Goyal, A.A. Balandin, Graphene-on-diamond devices with
increased current-carrying capacity: Carbon sp 2 -on-sp 3 technology. Nano Lett. 12, 1603–1608
(2012)
113. YuV Fedoseeva, L.G. Bulusheva, A.V. Okotrub, M.A. Kanygin, D.V. Gorodetskiy, I.P. Asanov,
D.V. Vyalikh, A.P. Puzyr, V.S. Bondar, Field emission luminescence of nanodiamonds
deposited on the aligned carbon nanotube array. Sci. Rep. 5, 9379 (2015)
114. N.A. Bushuev, P.D. Shalaev, A.R. Yafarov, R.K. Yafarov, Influence of the microwave plasma
deposition regime on the field-electron emission characteristics of nanodiamond-graphite
composite films. Tech. Phys. Lett. 41, 489–492 (2015)
115. S. Ren, H. Xu, J. Chen, X. Qu, Effects of sintering process on microstructure and properties
of flake graphite-diamond/copper composites. Mater. Manuf. Process. 31, 1377–1383 (2016)
116. W.P.Serena Saw, M. Mariatti, Properties of synthetic diamond and graphene nanoplateletfilled epoxy thin film composites for electronic applications. J. M. Sci. Mater. Electron. 23,
817–824 (2012)
117. Y.Q. Hou, D.M. Zhuang, G. Zhang, M.S. Wu, J.J. Liu, Tribological performances of diamond
film and graphite/diamond composite film. Wear 253, 711–719 (2002)
118. B. Ntsendwana, B.B. Mamba, S. Sampatha, O.A. Arotiba, Synthesis, characterisation and
application of an exfoliated graphite–diamond composite electrode in the electrochemical
degradation of trichloroethylene. RSC Adv. 3, 24473–24483 (2013)
119. M.G. Peleyeju, E.H. Umukoro, J.O. Babalola, O.A. Arotiba, Electrochemical degradation of an anthraquinonic dye on an expanded graphite-diamond composite electrode.
Electrocatalysis 7, 132–139 (2016)
120. S.P. Hong, T.H. Kim, S.W. Lee, Plasma-assisted purification of nanodiamonds and their
application for direct writing of a high purity nanodiamond pattern. Carbon 116, 640–647
(2017)
121. X. Xu, Z. Yu, Influence of thermal oxidation on as-synthesized detonation nanodiamond.
Particulogy 10, 339–344 (2012)
122. Y.J. Zhang, Y.L. Peng, C.Q. Ma, B. Shen, Can environmental innovation facilitate carbon
emissions reduction? Evidence from China. Energy Policy 100, 18–28 (2017)
8 Molten Salt-Assisted Preparation of Nanodiamonds at Atmospheric …
112. J. Yu, G. Liu, A.V. Sumant, V. Goyal, A.A. Balandin, Graphene-on-diamond devices with
increased current-carrying capacity: Carbon sp 2 -on-sp 3 technology. Nano Lett. 12, 1603–1608
(2012)
113. YuV Fedoseeva, L.G. Bulusheva, A.V. Okotrub, M.A. Kanygin, D.V. Gorodetskiy, I.P. Asanov,
D.V. Vyalikh, A.P. Puzyr, V.S. Bondar, Field emission luminescence of nanodiamonds
deposited on the aligned carbon nanotube array. Sci. Rep. 5, 9379 (2015)
114. N.A. Bushuev, P.D. Shalaev, A.R. Yafarov, R.K. Yafarov, Influence of the microwave plasma
deposition regime on the field-electron emission characteristics of nanodiamond-graphite
composite films. Tech. Phys. Lett. 41, 489–492 (2015)
115. S. Ren, H. Xu, J. Chen, X. Qu, Effects of sintering process on microstructure and properties
of flake graphite-diamond/copper composites. Mater. Manuf. Process. 31, 1377–1383 (2016)
116. W.P.Serena Saw, M. Mariatti, Properties of synthetic diamond and graphene nanoplateletfilled epoxy thin film composites for electronic applications. J. M. Sci. Mater. Electron. 23,
817–824 (2012)
117. Y.Q. Hou, D.M. Zhuang, G. Zhang, M.S. Wu, J.J. Liu, Tribological performances of diamond
film and graphite/diamond composite film. Wear 253, 711–719 (2002)
118. B. Ntsendwana, B.B. Mamba, S. Sampatha, O.A. Arotiba, Synthesis, characterisation and
application of an exfoliated graphite–diamond composite electrode in the electrochemical
degradation of trichloroethylene. RSC Adv. 3, 24473–24483 (2013)
119. M.G. Peleyeju, E.H. Umukoro, J.O. Babalola, O.A. Arotiba, Electrochemical degradation of an anthraquinonic dye on an expanded graphite-diamond composite electrode.
Electrocatalysis 7, 132–139 (2016)
120. S.P. Hong, T.H. Kim, S.W. Lee, Plasma-assisted purification of nanodiamonds and their
application for direct writing of a high purity nanodiamond pattern. Carbon 116, 640–647
(2017)
121. X. Xu, Z. Yu, Influence of thermal oxidation on as-synthesized detonation nanodiamond.
Particulogy 10, 339–344 (2012)
122. Y.J. Zhang, Y.L. Peng, C.Q. Ma, B. Shen, Can environmental innovation facilitate carbon
emissions reduction? Evidence from China. Energy Policy 100, 18–28 (2017)
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