Page 164 - Multifunctional Photocatalytic Materials for Energy
P. 164

150                                Multifunctional Photocatalytic Materials for Energy

           [90]  V.-D. Dao, et al., Graphene-based RuO 2 nanohybrid as a highly efficient catalyst for
              triiodide reduction in dye-sensitized solar cells, Carbon 81 (2015) 710–719.
           [91]  M. Motlak, et al., NiCu bimetallic nanoparticle-decorated graphene as novel and cost-
              effective counter electrode for dye-sensitized solar cells and electrocatalyst for methanol
              oxidation, Appl. Catal. A Gen. 501 (2015) 41–47.
           [92]  B. Yang, et al., Nanocomposite of tin sulfide nanoparticles with reduced graphene oxide
              in high-efficiency dye-sensitized solar cells, ACS Appl. Mater. Interfaces 7 (1) (2015)
              137–143.
           [93]  Y.  Dou, et  al., Nickel phosphide-embedded graphene as counter electrode for dye-
              sensitized solar cells, Phys. Chem. Chem. Phys. 14 (4) (2012) 1339–1342.
           [94]  T.P. Chou, et al., Hierarchically structured ZnO film for dye-sensitized solar cells with
              enhanced energy conversion efficiency, Adv. Mater. 19 (18) (2007) 2588–2592.
           [95]  C.-H. Hsu, et al., Enhanced performance of dye-sensitized solar cells with graphene/
              ZnO nanoparticles bilayer structure, J. Nanomater. 2014 (2014) 4.
           [96]  Q. Chang, et al., Graphene nanosheets@ ZnO nanorods as three-dimensional high ef-
              ficient counter electrodes for dye sensitized solar cells, Electrochim. Acta 151 (2015)
              459–466.
           [97]  S. Ameen, et al., Vertically aligned ZnO nanorods on hot filament chemical vapor depo-
              sition grown graphene oxide thin film substrate: solar energy conversion, ACS Appl.
              Mater. Interfaces 4 (8) (2012) 4405–4412.
           [98]  M. Al-Mamun, et al., Pt and TCO free hybrid bilayer silver nanowire–graphene counter
              electrode for dye-sensitized solar cells, Chem. Phys. Lett. 561 (2013) 115–119.
           [99]  Q.  Chang, et  al., Graphene nanosheets inserted by silver nanoparticles as zero-
              dimensional nanospacers for dye sensitized solar cells, Nanoscale 6 (10) (2014) 5410–5415.
          [100]  F.  Wang, et  al., CoS-graphene composite counter electrode for high performance
              dye-sensitized solar cell, J. Nanosci. Nanotechnol. 15 (2) (2015) 1180–1187.
          [101]  S. Das, et al., Synthesis of graphene-CoS electro-catalytic electrodes for dye sensitized
              solar cells, Carbon 50 (13) (2012) 4815–4821.
          [102]  R. Bajpai, et al., Graphene supported platinum nanoparticle counter-electrode for en-
              hanced performance of dye-sensitized solar cells, ACS Appl. Mater. Interfaces 3 (10)
              (2011) 3884–3889.
          [103]  P.  Zhai,  et  al.,  Water-soluble  microwave-exfoliated  graphene  nanosheet/platinum
              nanoparticle composite and its application in dye-sensitized solar cells, Electrochim.
              Acta 132 (2014) 186–192.
          [104]  Y.-G. Kim, et al., Aqueous dispersible graphene/Pt nanohybrids by green chemistry:
              application as cathodes for dye-sensitized solar cells, ACS Appl. Mater. Interfaces 5 (6)
              (2013) 2053–2061.
          [105]  M.H.  Yeh, et  al., Nanocomposite graphene/Pt electrocatalyst as economical counter
              electrode for dye-sensitized solar cells, ChemElectroChem 1 (2) (2014) 416–425.
          [106]  L. Ping-Jian, et al., Low platinum loading PtNPs/graphene composite catalyst with high
              electrocatalytic activity for dye-sensitized solar cells, Chin. Phys. B 21 (11) (2012) 118101.
          [107]  P. Dong, et al., Graphene on metal grids as the transparent conductive material for dye
              sensitized solar cell, J. Phys. Chem. C 118 (45) (2014) 25863–25868.
          [108]  X. Miao, et al., Highly crystalline graphene/carbon black composite counter electrodes
              with controllable content: synthesis, characterization and application in dye-sensitized
              solar cells, Electrochim. Acta 96 (2013) 155–163.
          [109]  M. Stefik, et al., Carbon–graphene nanocomposite cathodes for improved Co (II/III)
              mediated dye-sensitized solar cells, J. Mater. Chem. A 1 (16) (2013) 4982–4987.
   159   160   161   162   163   164   165   166   167   168   169