Page - 160 - in Photovoltaic Materials and Electronic Devices
Image of the Page - 160 -
Text of the Page - 160 -
18. Maier, S.A.; Atwater, H.A. Plasmonics: Localization and guiding of electromagnetic
energy inmetal/dielectric structures. J.Appl. Phys. 2005,98, 011101–011110.
19. Aydin, K.;Ferry, V.E.; Briggs, R.M.; Atwater,H.A. Broadband polarization-independent
resonant lightabsorptionusingultrathinplasmonicsuperabsorbers.Nat. Commun. 2011,
2, 517.
20. Wu, C.; Avitzour, Y.; Shvets, G. Ultra-thin wide-angle perfect absorber for infrared
frequencies.Proc. SPIE2008,7029.
21. Ferry, V.E.; Verschuuren, M.A.; van Lare, C.; Ruud, E.I.; Atwater, H.A.; Polman, A.
Optimized spatial correlations for broadband light trapping nano patterns in high
efficiencyultrathinfilma-Si:Hsolarcells.NanoLett. 2011,11, 4239–4245.
22. Trevino, J.; Forestiere, C.; Di Martino, G.; Yerci, S.; Priolo, F.; Dal Negro, L.
Plasmonic-photonic arrays with aperiodic spiral order for ultra-thin film solar cells.
Opt. Express2012,20,A418–A430.
23. Massiot, I.; Colin, C.; Pere-Laperne, N.; Roca i Cabarrocas, P.; Sauvan, C.; Lalanne, P.;
Pelouard, J.-L.; Collin, S. Nanopatterned front contact for broadband absorption in
ultra-thinamorphoussiliconsolarcells.Appl. Phys. Lett.2012,101, 163901–163903.
24. Vora, A.; Gwamuri, J.; Pala, N.; Kulkarni, A.; Pearce, J.M.; GĂĽney, D.Ă–. Exchanging
Ohmic losses in metamaterial absorbers with useful optical absorption for photovoltaics.
Sci. Rep. 2014,4, 1–13.
25. Sato,K.;Gotoh,Y.;Wakayama,Y.;Hayashi,Y.;Adachi,K.;Nishimura,H.Highlytextured
SnO2:F TCO films for a-Si solar cells.Rep. Res. Lab.AsahiGlassCo. Ltd. 1992,42, 129–137.
26. Dixit, A.; Sudakar, C.; Naik, R.; Naik, V.M.; Lawes, G. Undoped vacuum annealed In2O3
thinfilmsasa transparentconductingoxide.Appl. Phys. Lett. 2009,95, 192105–192107.
27. Lan, J.H.; Kanicki, J. ITO surface ball formation induced by atomic hydrogen in PECVD
andHW-CVDtools.ThinSolidFilms1997,304, 123–129.
28. Thøgersen,A.;Rein,M.;Monakhov,E.;Mayandi, J.;Diplas,S.Elementaldistributionand
oxygen deficiency of magnetron sputtered indium tin oxide films. J.Appl. Phys. 2011,
109, 113532.
29. Park,H.K.;Yoon,S.W.;Chung,W.W.;Min,B.K.;Do,Y.R.Fabricationandcharacterization
of large-scaleMultifunctional transparent ITOnanorodfilms. J.Mater. Chem.A2013,1,
5860–5867.
30. Castaneda, S.I.; Rueda, F.; Diaz, R.; Ripalda, J.M.; Montero, I. Whiskers in Indium tin
oxidefilmsobtainedbyelectronbeamevaporation. J.Appl. Phys. 1998,83, 1–8.
31. Yao, J.L.; Hao, S.; Wilkinson, J.S. Indium Tin Oxide Films by Sequential Evaporation.
ThinSolidFilms1990,189, 221–233.
32. Kobayashi, H.; Kogetsu, Y.; Ishida, T.; Nakato, Y. Increase in photovoltage of “indium tin
oxide/Silicon oxide/ mat-textured n–silicon” junction solar cells by silicon peroxidation
andannealingprocesses. J.Appl. Phys.1993,74, 4756–4761.
33. Lee, J.; Lee, S.; Li, G.; Petruska, M.A.; Paine, D.C.; Sun, S. A Facile Solution-Phase
ApproachtoTransparentandConductingITONanocrystalAssemblies. J.Am.Chem.Soc.
2012,134, 13410–13414.
160
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
- Categories
- Naturwissenschaften Physik
- Technik