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Supercapacitors graphene-based

Vivekchand SRC, Rout CS, Subrahmanyam KS et al (2008) Graphene-based electrochemical supercapacitors. J Chem Sci 120 9-13... [Pg.172]

Kulkarni, S.B., Patil, U.M., Shackery, I., Sohn, J.S., Lee, S., Park, B., Jun, S., 2014. High-performance supercapacitor electrode based on a polyaniline nanofibers/3D graphene framework as an efficient charge transporter. J. Mater. Chem. A 2,4989. [Pg.236]

Mahmood, N., C. Z. Zhang, H. Yin, and Y. L. Hou. 2014. Graphene-based nanocomposites for energy storage and conversion in lithium batteries, supercapacitors and fuel cells. Journal of Materials Chemistry A 2 15—32. [Pg.26]

FIGURE 2.83 CV curves of as-prepared solid-state supercapacitors with different electrolytes at 100 mV s" scan rate, (a) H3PO4-PVA and (b) H2SO4-PVA electrolyte, (c) Base gel electrolytes KOH (straight line) and NaOH (dashed line) and (d) neutral gel electrolytes NaCl (straight line) and KCl (dashed line). (Chen, Q. et al. 2014. Effect of different gel electrolytes on graphene-based solid-state supercapacitors. RSC Advances 4 36253-36256. Reproduced by permission of The Royal Soeiety of Chemistry.)... [Pg.171]

Tsai, W. Y, R. Lin, S. Murali et al. 2013. Outstanding performance of activated graphene based supercapacitors in ionic liquid electrolyte from -50°C to 80°C. Nano Energy 2 403-411. [Pg.202]

Sun, D., X. Yan, J. Lang, and Q. Xue. 2013. High performance supercapacitor electrode based on graphene paper via flame-induced reduction of graphene oxide paper. Journal... [Pg.217]

Paek, E., A. J. Pak, and G. S. Hwang. 2014. Large capacitance enhancement induced by metal-doping in graphene-based supercapacitors A first-principles-based assessment. ACS Applied Materials Interfaces 6 12168-12176. [Pg.232]

Shim, Y., Y. Jung, and H. J. Kim. 2011. Graphene-based supercapacitors A computer simulation study. Journal of Physical Chemistry C 115 23574—23583. [Pg.239]

Sun, G., J. An, C. K. Chua, H. Pang, J. Zhang, and P. Chen. 2015. Layer-by-layer printing of laminated graphene-based interdigitated microelectrodes for flexible planar micro-supercapacitors. Electrochemistry Communications 51 33-36. [Pg.241]

Chen, Q., X. M. Li, X. B. Zang et al. 2014. Effect of different gel electrolytes on graphene-based solid-state supercapacitors. RSC Advances 4 36253-36256. [Pg.243]

Subramaniam, C. K., and G. Boopalan. 2014. Study of storage capacity in various carbon/graphene-based solid-state supercapacitors. Applied Physics A - Materials Science Processing 116 887-891. [Pg.247]

Tamilarasan, R, and S. Ramaprabhu. 2013. Graphene based all-solid-state supercapacitors with ionic liquid incorporated polyacrylonitrile electrolyte. Energy 51 374-381. [Pg.250]

Notarianni, M., J. Liu, F. Mirri, M. PasquaU, and N. Motta. 2014. Graphene-based supercapacitor with carbon nanotube film as highly efficient current collector. Nanotechnology 25 435405. [Pg.272]

Davies, A., Audette, R, Farrow, B., Hassan, R, Chen, Z., Choi, J., and Yii, A (2011). Graphene-based flexible supercapacitors Pulse-electropotymerization of pol3 yrrole on free-standing graphene films,/ Phys. Chem. C, 115, pp. 17612-17620. [Pg.289]

Figure 5.19 Fabrication of a graphene-based supercapacitor device (a) Schematic diagram of a graphene-based supercapacitor device and (b) optical image of an industry-grade coin-shaped graphene-hased supercapacitor device. Reproduced with permission from [282],... Figure 5.19 Fabrication of a graphene-based supercapacitor device (a) Schematic diagram of a graphene-based supercapacitor device and (b) optical image of an industry-grade coin-shaped graphene-hased supercapacitor device. Reproduced with permission from [282],...
Wang Y, Shi Z, Huang Y, Ma Y, Wang C, Chen M, Chen Y (2009) Supercapacitor devices based on graphene materials. J Phys Chem C 113 13103-13107... [Pg.386]

Zhang LL, Zhou R, Zhao XS (2010) Graphene-based materials as supercapacitor electrodes. J Mater Chem... [Pg.961]

Ku K, Kim B, Chung H, Kim W (2010) Characterization of graphene-based supercapacitors fabricated on AI foils using Au or Pd thin films as interlayers. Synth Met 160 2613-2617... [Pg.961]

Liu C, Yu Z, Neff D, Zhamu A, Jang BZ (2010) Graphene-based supercapacitor with an ultrahigh energy density. Nano Lett 10 4863-4868... [Pg.962]

Jiang F, Fang Y, Xue Q, Chen L, Lu Y (2010) Graphene-based carbon nano-fibers grown on thin-sheet sinter-locked Ni-fiber as self-supported electrodes for supercapacitors. Mater Lett 64 199-202... [Pg.963]

Mishra AK, Ramaprabhu S (2011) Functionalized graphene-based nanocomposites for supercapacitor application. J Phys Chem C 115 14006-14013... [Pg.1822]

Zhang J, Jiang J, Li H, Zhao XS (2011) A high-performance asymmetric supercapacitor fabricated with graphene-based electrodes. Energy Environ Sci 4 4009... [Pg.1822]


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See also in sourсe #XX -- [ Pg.227 ]




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