16 p-Type Dye Sensitized Solar Cells …
343
Lyu S, Farré Y, Ducasse L, Pellegrin Y, Toupance T, Olivier C, Odobel F (2016) Push–pull ruthenium
diacetylide complexes: new dyes for p-type dye-sensitized solar cells. RSC Adv. 6:19928–19936
Marinakis N, Willgert M, Constable EC, Housecroft CE (2017) Optimization of performance and
long-term stability of p-type dye-sensitized solar cells with a cycloruthenated dye through electrolyte solvent tuning. Sustain Energy Fuels 1:626–635
Miclau M, Miclau N, Banica R, Ursu D (2017) Effect of polymorphism on photovoltaic performance
of CuAlO 2 delafossite nanomaterials for p-type dye-sensitized solar cells application. Mater
Today 4:6975–6981
Nattestad A, Perera I, Spiccia L (2016) Developments in and prospects for photocathodic and
tandem dye-sensitized solar cells. J Photochem Photobiol, C 28:44–71
Novelli V, Awais M, Dowling DP, Dini D (2015) Electrochemical characterization of rapid discharge sintering (RDS) NiO cathodes for dye-sensitized solar cells of p-type. Am. J. Anal. Chem
6:176–187
Odobel F, Pellegrin Y (2013) Recent advances in the sensitization of wide-band-gap nanostructured p-type semiconductors. Photovoltaic and photocatalytic applications. J Phys Chem Lett
4:2551–2564
O’regan B, Grätzel M (1991) A low-cost, high-efficiency solar cell based on dye-sensitized colloidal
TiO 2 films. Nature 353:737
Outlook AE (2018) With projection to 2050, US Energy Information Administration (EIA), 6 Feb
2018
Perera IR, Daeneke T, Makuta S, Yu Z, Tachibana Y, Mishra A, Bäuerle P, Ohlin CA, Bach U,
Spiccia L (2015) Application of the tris (acetylacetonato) iron (III)/(II) Redox Couple in p-Type
Dye-Sensitized Solar Cells. Angew Chem Int Ed 54:3758–3762
Perera I, Hettiarachchi C, Ranatunga R (2019) Metal–organic frameworks in dye-sensitized solar
cells. In: Advances in solar energy research. Springer, Berlin
Powar S, Daeneke T, Ma MT, Fu D, Duffy NW, Götz G, Weidelener M, Mishra A, Bäuerle P, Spiccia
L (2013) Highly efficient p-Type dye-sensitized solar cells based on tris (1, 2-diaminoethane)
cobalt (II)/(III) Electrolytes. Angew Chem Int Ed 52:602–605
Powar S, Xiong D, Daeneke T, Ma MT, Gupta A, Lee G, Makuta S, Tachibana Y, Chen W, Spiccia L
(2014) Improved photovoltages for p-type dye-sensitized solar cells using CuCrO 2 nanoparticles.
J Phys Chem C 118:16375–16379
Renaud AL, Cario L, Deniard P, Gautron E, Rocquefelte X, Pellegrin Y, Blart E, Odobel F, Jobic
S (2013a) Impact of Mg doping on performances of CuGaO 2 based p-type dye-sensitized solar
cells. J Phys Chem C 118:54–59
Renaud AL, Chavillon B, Cario L, Pleux LCL, Szuwarski N, Pellegrin Y, Blart E, Gautron E,
Odobel F, Jobic SP (2013b) Origin of the black color of NiO used as photocathode in p-type
dye-sensitized solar cells. J Phys Chem C 117:22478–22483
Renaud A, Cario L, Pellegrin Y, Blart E, Boujtita M, Odobel F, Jobic S (2015) The first dye-sensitized
solar cell with p-type LaOCuS nanoparticles as a photocathode. RSC Adv 5:60148–60151
Sabuzi F, Armuzza V, Conte V, Floris B, Venanzi M, Galloni P, Gatto E (2016) KuQuinones: a new
class of quinoid compounds as photoactive species on ITO. J Mater Chem C 4:622–629
Shah A, Platz R, Keppner H (1995) Thin-film silicon solar cells: a review and selected trends. Sol
Energy Mater Sol Cells 38:501–520
Sheibani E, Zhang L, Liu P, Xu B, Mijangos E, Boschloo G, Hagfeldt A, Hammarström L, Kloo L,
Tian H (2016) A study of oligothiophene–acceptor dyes in p-type dye-sensitized solar cells. Rsc
Adv 6:18165–18177
Shi Z, Lu H, Liu Q, Cao F, Guo J, Deng K, Li L (2014) Efficient p-type dye-sensitized solar cells
with all-nano-electrodes: NiCo 2 S 4 mesoporous nanosheet counter electrodes directly converted
from NiCo 2 O 4 photocathodes. Nanoscale Res Lett 9:608
Tian H (2019) Solid-state p-type dye-sensitized solar cells: progress, potential applications and
challenges. Sustain Energy Fuels
343
Lyu S, Farré Y, Ducasse L, Pellegrin Y, Toupance T, Olivier C, Odobel F (2016) Push–pull ruthenium
diacetylide complexes: new dyes for p-type dye-sensitized solar cells. RSC Adv. 6:19928–19936
Marinakis N, Willgert M, Constable EC, Housecroft CE (2017) Optimization of performance and
long-term stability of p-type dye-sensitized solar cells with a cycloruthenated dye through electrolyte solvent tuning. Sustain Energy Fuels 1:626–635
Miclau M, Miclau N, Banica R, Ursu D (2017) Effect of polymorphism on photovoltaic performance
of CuAlO 2 delafossite nanomaterials for p-type dye-sensitized solar cells application. Mater
Today 4:6975–6981
Nattestad A, Perera I, Spiccia L (2016) Developments in and prospects for photocathodic and
tandem dye-sensitized solar cells. J Photochem Photobiol, C 28:44–71
Novelli V, Awais M, Dowling DP, Dini D (2015) Electrochemical characterization of rapid discharge sintering (RDS) NiO cathodes for dye-sensitized solar cells of p-type. Am. J. Anal. Chem
6:176–187
Odobel F, Pellegrin Y (2013) Recent advances in the sensitization of wide-band-gap nanostructured p-type semiconductors. Photovoltaic and photocatalytic applications. J Phys Chem Lett
4:2551–2564
O’regan B, Grätzel M (1991) A low-cost, high-efficiency solar cell based on dye-sensitized colloidal
TiO 2 films. Nature 353:737
Outlook AE (2018) With projection to 2050, US Energy Information Administration (EIA), 6 Feb
2018
Perera IR, Daeneke T, Makuta S, Yu Z, Tachibana Y, Mishra A, Bäuerle P, Ohlin CA, Bach U,
Spiccia L (2015) Application of the tris (acetylacetonato) iron (III)/(II) Redox Couple in p-Type
Dye-Sensitized Solar Cells. Angew Chem Int Ed 54:3758–3762
Perera I, Hettiarachchi C, Ranatunga R (2019) Metal–organic frameworks in dye-sensitized solar
cells. In: Advances in solar energy research. Springer, Berlin
Powar S, Daeneke T, Ma MT, Fu D, Duffy NW, Götz G, Weidelener M, Mishra A, Bäuerle P, Spiccia
L (2013) Highly efficient p-Type dye-sensitized solar cells based on tris (1, 2-diaminoethane)
cobalt (II)/(III) Electrolytes. Angew Chem Int Ed 52:602–605
Powar S, Xiong D, Daeneke T, Ma MT, Gupta A, Lee G, Makuta S, Tachibana Y, Chen W, Spiccia L
(2014) Improved photovoltages for p-type dye-sensitized solar cells using CuCrO 2 nanoparticles.
J Phys Chem C 118:16375–16379
Renaud AL, Cario L, Deniard P, Gautron E, Rocquefelte X, Pellegrin Y, Blart E, Odobel F, Jobic
S (2013a) Impact of Mg doping on performances of CuGaO 2 based p-type dye-sensitized solar
cells. J Phys Chem C 118:54–59
Renaud AL, Chavillon B, Cario L, Pleux LCL, Szuwarski N, Pellegrin Y, Blart E, Gautron E,
Odobel F, Jobic SP (2013b) Origin of the black color of NiO used as photocathode in p-type
dye-sensitized solar cells. J Phys Chem C 117:22478–22483
Renaud A, Cario L, Pellegrin Y, Blart E, Boujtita M, Odobel F, Jobic S (2015) The first dye-sensitized
solar cell with p-type LaOCuS nanoparticles as a photocathode. RSC Adv 5:60148–60151
Sabuzi F, Armuzza V, Conte V, Floris B, Venanzi M, Galloni P, Gatto E (2016) KuQuinones: a new
class of quinoid compounds as photoactive species on ITO. J Mater Chem C 4:622–629
Shah A, Platz R, Keppner H (1995) Thin-film silicon solar cells: a review and selected trends. Sol
Energy Mater Sol Cells 38:501–520
Sheibani E, Zhang L, Liu P, Xu B, Mijangos E, Boschloo G, Hagfeldt A, Hammarström L, Kloo L,
Tian H (2016) A study of oligothiophene–acceptor dyes in p-type dye-sensitized solar cells. Rsc
Adv 6:18165–18177
Shi Z, Lu H, Liu Q, Cao F, Guo J, Deng K, Li L (2014) Efficient p-type dye-sensitized solar cells
with all-nano-electrodes: NiCo 2 S 4 mesoporous nanosheet counter electrodes directly converted
from NiCo 2 O 4 photocathodes. Nanoscale Res Lett 9:608
Tian H (2019) Solid-state p-type dye-sensitized solar cells: progress, potential applications and
challenges. Sustain Energy Fuels
