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34. Chen,Z.;Li,W.;Li,R.;Zhang,Y.;Xu,G.;Cheng,H.FabricationofHighlyTransparent and Conductive Indium-Tin Oxide Thin films with a high figure of merit via solution processing.Langmuir2013,29, 13836–13842. 35. Wan, D.; Chen, P.; Liang, J.; Li, S.; Huang, F. (211)-Orientation Preference of Transparent ConductingIn2O3:SnFilmsandItsFormationMechanism.ACS.Appl.Mater. Interfaces 2011,3, 4751–4755. 36. Vora, A.; Gwamuri, J.; Pearce, J.M.; Bergstrom, P.L.; Guney, D.O. Multi-resonant silver nano-disk patterned thin film hydrogenated amorphous silicon solar cells for Staebler-Wronskieffect compensation. J.Appl. Phys. 2014,116, 093103. 37. Gwamuri, J.; Vora, A.; Khanal, R.R.; Phillips, A.B.; Heben, M.J.; Guney, D.O.; Bergstrom, P.; Kulkarni, A.; Pearce, J.M. Limitations of ultra-thin transparent conducting oxides for integration into plasmonic-enhanced thin-film solar photovoltaic devices. Mater.Renew. Sustain. Energy2015,4, 1–12. 38. Gwamuri, J.; Vora, A.; Mayandi, J.; Guney, D.O.; Bergstrom, P.; Pearce, J.M. A New Method of Preparing Highly Conductive Ultra-Thin Indium Tin Oxide for Plasmonic-EnhancedThinFilmSolarPhotovoltaicDevices. 2016, tobepublished. 39. Hang, C.J.; Su, Y.K.; Wu, S.L. The effect of solvent on the etching of ITO electrode. Mater.Chem.Phys. 2004,84, 146–150. 40. Marikkannan, M.; Subramanian, M.; Mayandi, J.; Tanemura, M.; Vishnukanthan, V.; Pearce, J.M. Effect of ambient combinations of argon, oxygen, and hydrogen on the properties of DC magnetron sputtered indium tin oxide films. AIP Adv. 2015, 5, 017128–017138. 41. Luo, S.; Kohiki, S.; Okada, K.; Shoji, F.; Shishido, T. Hydrogen effects on crystallinity, photoluminescence, and magnetization of indium tin oxide thin films sputter-deposited onglasssubstratewithoutheat treatment.Phys. StatusSolidiA2010,207, 386–390. 42. Kato, K.; Omoto, H.; Tomioka, T.; Takamatsu, A. Changes in electrical and structural propertiesof indiumoxidethinfilmsthroughpost-depositionannealing.ThinSolidFilms 2011,520, 110–116. 43. Liu,D.;Lei,W.W.;Zou,B.HighpressureX-raydiffractionandRamanspectrastudyof indiumoxide. J.Appl. Phys.2008,104, 083506–083511. 44. Berengue, O.M.; Rodrigues, A.D.; Dalmaschio, C.J.; Lanfredi, A.J.C.; Leite, E.R.; Chiquito, A.J. Structural characterization of indium oxide nanostructures: A Raman analysis. J.Phys.DAppl. Phys. 2010,43, 045401–045404. 45. Chandrasekhar,R.;Choy,K.L. Innovativeandcost-effectivesynthesisof indiumtinoxide films.ThinSolidFilms2001,398–399, 59–64. 46. Luo, S.N.; Kono, A.; Nouchi, N.; Shoji, F. Effective creation of oxygen vacancies as an electron carrier source in tin-doped indium oxide films by plasma sputtering. J.Appl.Phys. 2006,100, 113701–113709. 47. Okada, K.; Kohiki, S.; Luo, S.; Sekiba, D.; Ishii, S.; Mitome, M.; Kohno, A.; Tajiri, T.; Shoji, F. Correlation between resistivity and oxygen vacancy of hydrogen-doped indium tinoxide thinfilms.ThinSolidFilms2011,519, 3557–3561. 161
zurĂĽck zum  Buch Photovoltaic Materials and Electronic Devices"
Photovoltaic Materials and Electronic Devices
Titel
Photovoltaic Materials and Electronic Devices
Autor
Joshua M. Pearce
Herausgeber
MDPI
Ort
Basel
Datum
2016
Sprache
englisch
Lizenz
CC BY-NC-ND 4.0
ISBN
978-3-03842-217-4
Abmessungen
17.0 x 24.4 cm
Seiten
216
Schlagwörter
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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Technik
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