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4. Bisquert J, Cahen D, Hodes G, Rühle S, Zaban A (2004) Physical chemical principles of
photovoltaic conversion with nanoparticulate, mesoporous dye-sensitized solar cells. J Phys
Chem B 108:8106-8118
5. O' Regan B, Grätzel M (1991) A low-cost high-efficiency solar cell based on dye-sensitized
colloidal TiO 2 films. Nature 353:737-740
6. Peter LM (2011) The Grätzel cell: where next? J Phys Chem Lett 2:1861-1867
7. Hodes G (2008) Comparison of dye- and semiconductor-sensitized porous nanocrystalline
liquid junction solar cells. J Phys Chem C 112(46):17778-17787
8. Robel I, Subramanian V, Kuno M, Kamat PV (2006) Quantum dot solar cells. harvesting
light energy with CdSe nanocrystals molecularly linked to mesoscopic TiO 2 films. J Am
Chem Soc 128:2385-2393
9. Zaban A, Micic OI, Gregg BA, Nozik AJ (1998) Photosensitization of nanoporous TiO 2
electrodes with InP quantum dots. Langmuir 14(12):3153-3156
10. Mora-Seró I, Giménez S, Fabregat-Santiago F, Gómez R, Shen Q, Toyoda T, Bisquert J (2009)
Recombination in quantum dot sensitized solar cells. Acc Chem Res 42(11):1848-1857
11. Leschkies SK, Divakar R, Basu J, Enache-Pommer E, Boercker JE, Carter CB, Kortshagen
UR, Norris DJ, Aydil ES (2007) Photosensitization of ZnO nanowires with CdSe quantum
dots for photovoltaic devices. Nano Lett 7(6):1793-1798
12. Hossain A, Yang GW, Parameswaran M, Jennings JR, Wang Q (2010) Mesoporous SnO2
spheres
synthesized
by
electrochemical
anodization
and
their
application
in
CdSe-
Sensitized Solar Cells. J Phys Chem C 114(49):21878-21884
13. Hossain MA, Jennings JR, Koh ZY, Wang Q (2011) Carrier generation and collection in
CdS/CdSe-sensitized SnO2 solar cells exhibiting unprecedented photocurrent densities.
ACS Nano 5(4):3172-3181
14. Hossain MA, Koh ZY, Wang Q (2012) PbS/CdS-sensitized mesoscopic SnO 2 solar cells for
enhanced infrared light harnessing. Phys Chem Chem Phys 14(20):7367-7374
15. Samadpour M, Giménez S, Boix PP, Shen Q, Calvo ME, Taghavinia N, zad AI, Toyoda T,
Míguez
H,
Mora-Seró
I
(2012)
Effect
of
nanostructured
electrode
architecture
and
semiconductor
deposition
strategy
on
the
photovoltaic
performance
of
quantum
dot
sensitized solar cells. Electrochimica Acta 75(0):139-147
16. Giménez S, Xu X, Lana-Villarreal T, Gómez R, Agouram S, Muñoz-Sanjosé V, Mora-Seró
I (2010) Determination of limiting factors of photovoltaic efficiency in quantum dot
sensitized solar cells: correlation between cell performance and structural properties. J Appl
Phys 108:064310
17. Vogel R, Hoyer P, Weller H (1994) Quantum-sized Pbs, Cds, Ag2 s, Sb2s3, and Bi2s3
particles as sensitizers for various nanoporous wide-bandgap semiconductors. J Phys Chem
98(12):3183-3188
18. Lin SC, Lee YL, Chang CH, Shen YJ, Yang YM (2007) Quantum-dot-sensitized solar cells:
Assembly of CdS-quantum-dots coupling techniques of self-assembled monolayer and
chemical bath deposition. Appl Phys Lett 90(14)
19. Yu XY, Liao JY, Qiu KQ, Kuang DB, Su CY (2011) Dynamic study of highly efficient CdS/
CdSe
quantum
dot-sensitized
solar
cells
fabricated
by
electrodeposition.
ACS
Nano
5(12):9494-9500
20. Hu HW, Ding JN, Zhang S, Li Y, Bai L, Yuan NY (2013) Photodeposition of Ag2S on TiO 2
nanorod arrays for quantum dot-sensitized solar cells. Nanoscale Res Lett 8
21. Mora-Sero I, Gimenez S, Moehl T, Fabregat-Santiago F, Lana-Villareal T, Gomez R,
Bisquert J (2008) Factors determining the photovoltaic performance of a CdSe quantum dot
sensitized
solar
cell:
the
role
of
the
linker
molecule
and
of
the
counter
electrode.
Nanotechnology 19(42)
22. Guijarro N, Lana-Villarreal T, Mora-Sero I, Bisquert J, Gomez R (2009) CdSe quantum dot-
sensitized TiO 2 electrodes: effect of quantum dot coverage and mode of attachment. J Phys
Chem C 113(10):4208-4214
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