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2. Yella, A.; Lee, H.W.; Tsao, H.N.; Yi, C.; Chandiran, A.K.; Nazeeruddin, Md.K.; Diau,E.W.G.;Yeh,C.Y.;Zakeeruddin,S.M.;Grätzel,M.Porphyrin-sensitizedsolarcells with cobalt (II/III)-based redox electrolyte exceed 12 percent efficiency. Science 2011, 334, 629–634. 3. Wang, N.; Han, L.; He, H.; Park, N.H.; Koumoto, K. A novel high-performance photovoltaic–thermoelectrichybriddevice.EnergyEnviron. Sci. 2011,4, 3676–3679. 4. Lee, S.H. Al-doped ZnO Thin Film: A new transparent conducting layer for ZnO nanowire-baseddye-sensitizedsolarcells. J.Phys. Chem.C2010,114, 7185–1789. 5. Lee, C.J.; Lee, T.J.; Lyu, S.C.; Zhang, Y.; Ruh, H.; Lee, H.J. Field emission from well-alignedzincoxidenanowiresgrownat lowtemperature.Appl. Phys. Lett. 2002,81, 3648–3650. 6. Yagi, E.; Hasiguti, R.R.; Aono, M. Electronic conduction above 4 K of slightly reduced oxygen-deficient rutileTiO2´x.Phys. Rev. BCondes.Matter1996,54, 7945–7956. 7. Zhang, Q.; Chou, T.P.; Russo, B.; Jenekhe, S.A.; Cao, G. Aggregation of ZnO nanocrystallitesforhighconversionefficiencyindye-sensitizedsolarcell.Angew.Chem. Int. Ed. Engl. 2008,47, 2402–2406. 8. Quintana, M.; Edvinsson, T.; Hagfeldt, A.; Boschloo, G. Comparison of dye-sensitized ZnO and TiO2 solar cells: Studies of charge transport and carrier lifetime. J. Phys. Chem.C2007,111, 1035–1041. 9. Wong, D.K.P.; Ku, C.H.; Chen, Y.R.; Chen, G.R.; Wu, J.J. Enhancing electron collection efficiency and effective diffusion length in dye-sensitized solar cells. Chemphyschem 2009,10, 2698–2702. 10. Baxter, J.B.;Aydil,E.S.Dye-sensitizedsolarcellsbasedonsemiconductormorphologies withZnOnanowires.Sol. EnergyMater. Sol. Cells2006,90, 607–622. 11. Zhu, K.; Neale, N.R.; Miedaner, A.; Frank, A.J. Enhanced charge-collection efficiencies and light scattering in dye-sensitized solar cells using oriented TiO2 nanotubes arrays. NanoLett. 2007,7, 69–74. 12. Yodyingyong, S.; Zhang, Q.F.; Park, K.; Dandeneau, C.S.; Zhou, X.Y.; Triampo, D.; Cao, G.Z. ZnO nanoparticles and nanowire array hybrid photoanodes for dye-sensitizedsolarcells.Appl. Phys. Lett. 2010,96, 073115. 13. Jeng, M.J.; Wung, Y.L.; Chang, L.B.; Chow, L. Dye-sensitized solar cells with anatase TiO2 nanorods prepared by hydrothermal method. Int. J. Photoenergy 2013, 2013, 280253. 14. Choopun, S.; Tubtimtae, A.; Santhaveesuk, T.; Nilphai, S.; Wongrat, E.; Hongsith, N. Zinc oxide nanostructures for applications as ethanol sensors and dye-sensitized solar cells.Appl. Surf. Sci. 2009,256, 998–1002. 15. Xie, Y.L.; Li, Z.X.; Xu, Z.G.; Zhang, H.L. Preparation of coaxial TiO2/ZnO nanotube arrays for high-efficiency photo-energy conversion applications. Electrochem. Commun. 2011,13, 788–791. 16. Greene, L.; Law, M.; Tan, D.H.; Goldberger, J.; Yang, P. General route to vertical ZnO nanowirearraysusingtexturedZnOseeds.NanoLett. 2005,5, 1231–1236. 172
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Photovoltaic Materials and Electronic Devices
Title
Photovoltaic Materials and Electronic Devices
Author
Joshua M. Pearce
Editor
MDPI
Location
Basel
Date
2016
Language
English
License
CC BY-NC-ND 4.0
ISBN
978-3-03842-217-4
Size
17.0 x 24.4 cm
Pages
216
Keywords
Perovskite, Plasmonics, Nanostructured Materials, Anti-Reflection Coatings, Transparent Conductive Oxides, Amorphous Silicon, Dye-sensitized Solar Cells (DSSCs) Materials, Organic Photovoltaic Materials, Solar Energy Materials
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