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87. Ozawa,H.;Kuroda,T.;Harada,S.;Arakawa,H.EfficientRutheniumSensitizerwitha TerpyridineLigandHavingaHexylthiopheneUnit forDye-SensitizedSolarCells: Effects of the Substituent Position on the Solar Cell Performance. Eur. J. Inorg. Chem. 2014, 2014, 4734–4739. 88. Nazeeruddin, M.K.; Zakeeruddin, S.M.; Humphry-Baker, R.; Gorelsky, S.I.; Lever, A.B.P.; Grätzel, M. Synthesis, spectroscopic and a ZINDO study of cis- and trans-(X2)bis(4,41-dicarboxylic acid-2,21-bipyridine)ruthenium(II) complexes (X=Cl´, H2O,NCS´). Coord. Chem. Rev. 2000, 208, 213–225. 89. Renouard, T.; Grätzel, M. Functionalized tetradentate ligands for Ru-sensitized solar cells. Tetrahedron 2001,57, 8145–8150. 90. Renouard,T.;Fallahpour,R.-A.;Nazeeruddin,M.K.;Humphry-Baker,R.;Gorelsky,S.I.; Lever, A.B.P.; Grätzel, M. Novel Ruthenium Sensitizers Containing Functionalized Hybrid Tetradentate Ligands: Synthesis, Characterization, and INDO/S Analysis. Inorg.Chem. 2002, 41, 367–378. 91. Barolo,C.;Nazeeruddin,M.K.;Fantacci,S.;DiCenso,D.;Comte,P.;Liska,P.;Viscardi,G.; Quagliotto, P.; De Angelis, F.; Ito, S.; Grätzel, M. Synthesis, characterization, and DFT-TDDFTcomputational studyofarutheniumcomplexcontainingafunctionalized tetradentate ligand. Inorg. Chem. 2006, 45, 4642–4653. 92. Abbotto, A.; Sauvage, F.; Barolo, C.; De Angelis, F.; Fantacci, S.; Grätzel, M.; Manfredi, N.; Marinzi, C.; Nazeeruddin, M.K. Panchromatic ruthenium sensitizer based on electron-rich heteroarylvinylenepi-conjugated quaterpyridine for dye-sensitized solar cells. DaltonTrans. 2011, 40, 234–242. 93. Dye-sensitized Solar Cells; Kalyanasundaram, K., Ed.; CRC Press: Boca Raton, Florida, US,2010. 94. Nazeeruddin, M.K.; Grätzel, M. Separation of linkage isomers of trithiocyanato (4,41,4”-tricarboxy-2,21,6,2”-terpyridine)ruthenium(II)bypH-titrationmethodandtheir application in nanocrystalline TiO2-based solar cells. J. Photochem. Photobiol., A 2001, 145, 79–86. 95. Pal, A.K.; Hanan, G.S. Design, synthesis and excited-state properties of mononuclear Ru(II) complexes of tridentate heterocyclic ligands. Chem. Soc. Rev. 2014, 43, 6184–6197. 96. Medlycott,E.A.;Hanan,G.S.Designingtridentate ligands forruthenium(II) complexes with prolonged room temperature luminescence lifetimes. Chem. Soc. Rev. 2005, 34, 133–142. 97. Hammarström, L.; Johansson, O. Expanded bite angles in tridentate ligands. Improving the photophysical properties in bistridentate Ru (II) polypyridine complexes. Coord.Chem. Rev. 2010, 254, 2546–2559. 98. Chandrasekharam, M.; Rajkumar, G.; Rao, C.S.; Suresh, T.; Soujanya, Y.; Reddy, P.Y. High molar extinction coefficient Ru(II)-mixed ligand polypyridyl complexes for dye sensitizedsolarcell application. Adv.Optoelectron. 2011, 2011, 1–12. 99. Giribabu, L.; Singh, V.K.; Srinivasu, M.; Kumar, C.V.; Reddy, V.G.; Soujnya, Y.; Reddy, P.Y. Synthesisandphotoelectrochemicalcharacterizationofahighmolarextinctioncoefficient heteroleptic ruthenium(II) complex. J.Chem. Sci. 2011, 123, 371–378. 56
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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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