Page 165 - Multifunctional Photocatalytic Materials for Energy
P. 165

Graphene-based nanomaterials for solar cells                      151

            [110]  Y.  Liao, et  al., Fe3W3C/WC/graphitic  carbon  ternary nanojunction hybrids  for dye-
                 sensitized solar cells, ChemSusChem 8 (4) (2015) 726–733.
            [111]  B.  Munkhbayar, et  al., Synthesis of a graphene–tungsten composite with improved
                 dispersibility of graphene in an ethanol solution and its use as a counter electrode for
                 dye-sensitised solar cells, J. Power Sources 230 (2013) 207–217.
             [112]  C.  Xu,  et  al.,  Synthesis  of  hemin  functionalized  graphene  and  its  application  as a
                 counter electrode in dye-sensitized solar cells, Mater. Chem. Phys. 132 (2) (2012)
                 858–864.
            [113]  G. Yue, et al., A catalytic composite film of MoS 2/graphene flake as a counter electrode
                 for Pt-free dye-sensitized solar cells, Electrochim. Acta 85 (2012) 162–168.
            [114]  X. Zhang, et al., Mesoporous Ni0. 85Se nanospheres grown in situ on graphene with
                 high performance in dye-sensitized solar cells, ACS Appl. Mater. Interfaces 7 (16)
                 (2015) 8457–8464.
            [115]  Y. Li, et al., Reduced graphene oxide–Ta 3 N 5 composite: a potential cathode for effi-
                 cient Co (bpy) 3 3+/2+ mediated dye-sensitized solar cells, J. Mater. Chem. A 1 (21)
                 (2013) 6342–6349.
            [116]  Y. Zhang, et al., Graphene transforms wide band gap ZnS to a visible light photocatalyst.
                 The new role of graphene as a macromolecular photosensitizer, ACS Nano 6 (11) (2012)
                 9777–9789.
            [117]  X.  Liu, et  al., UV-assisted photocatalytic synthesis of ZnO–reduced graphene oxide
                 composites with enhanced photocatalytic activity in reduction of Cr (VI), Chem. Eng. J.
                 183 (2012) 238–243.
            [118]  M. Jabeen, et al., UV-assisted photocatalytic synthesis of ZnO-reduced graphene oxide
                 nanocomposites with enhanced photocatalytic performance in degradation of methylene
                 blue, ECS J. Solid State Sci. Technol. 6 (4) (2017) M36–M43.
            [119]  K.P. Loh, S.W. Tong, J. Wu, Graphene and graphene-like molecules: prospects in solar
                 cells, J. Am. Chem. Soc. 138 (4) (2016) 1095–1102.
            [120]  P.E. Marchezi, et al., Understanding the role of reduced graphene oxide in the electrolyte
                 of dye-sensitized solar cells, J. Phys. Chem. C 120 (41) (2016) 23368–23376.
            [121]  M. Khannam, R. Boruah, S.K. Dolui, An efficient quasi-solid state dye sensitized solar
                 cells based on graphene oxide/gelatin gel electrolyte with NiO supported TiO 2 photo-
                 anode, J. Photochem. Photobiol. A Chem. 335 (2017) 248–258.
            [122]  L.J. Brennan, et al., Graphene–ionic liquid electrolytes for dye sensitised solar cells, J.
                 Mater. Chem. A 1 (29) (2013) 8379–8384.
            [123]  I. Ahmad, U. Khan, Y.K. Gun'ko, Graphene, carbon nanotube and ionic liquid mixtures:
                 towards new quasi-solid state electrolytes for dye sensitised solar cells, J. Mater. Chem.
                 21 (42) (2011) 16990–16996.
            [124]  D.  Zhang, et  al., in: Graphene nanosheet counter-electrodes for dye-sensitized solar
                 cells, Nanoelectronics Conference (INEC), 2010 3rd International, IEEE, 2010.
            [125]  M.S. Ramasamy, et al., Reduced graphene oxide/Polypyrrole/PEDOT composite films
                 as efficient Pt-free counter electrode for dye-sensitized solar cells, Electrochim. Acta
                 173 (2015) 276–281.
            [126]  M. Belekoukia, et al., Electrochemically exfoliated graphene/PEDOT composite films
                 as efficient Pt-free counter electrode for dye-sensitized solar cells, Electrochim. Acta
                 194 (2016) 110–115.
            [127]  C.-H. Tsai, et al., Reduced graphene oxide/macrocyclic iron complex hybrid materials
                 as counter electrodes for dye-sensitized solar cells, J. Colloid Interface Sci. 495 (2017)
                 111–121.
   160   161   162   163   164   165   166   167   168   169   170