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References 1. Pearce, J.M.Photovoltaics—Apathtosustainable futures.Futures2002,34, 663–674. 2. Pillai, U. Drivers of cost reduction in solar photovoltaic.EnergyEcon. 2015,50, 286–293. 3. Honeyman,C.;Kimbis,T.SolarMarket. InsightReport2014Q2; SolarEnergyIndustrial AssociationandGTMresearch: Washington,DC,USA,2014. 4. Candelise,C.; Winskel,M.;Gross, R.J.K. ThedynamicsofsolarPV costsandpricesasa challengefor technologyforecasting.Renew. Sustain. EnergyRev. 2013,26, 96–107. 5. Rubin,E.S.;Azevedo, I.M.L.; Jaramillo,P.;Yeh,S.Areviewof learningrates forelectricity supply technologies.EnergyPolicy2015,86, 198–218. 6. Branker, K.; Pathak, M.J.M.; Pearce, J.M. A Review of Solar Photovoltaic Levelized Cost ofElectricity.Renew.Sustain. EnergyRev. 2011,15, 4470–4482. 7. Shah, A.; Torres, P.; Tscharner, R.; Wyrsch, N.; Keppner, H. Photovoltaic technology: The case for thin-filmsolarcells.Science1999,285, 692–698. 8. Carlson, D.E.; Wronski, C.R. Amorphous Silicon Solar Cell.Appl. Phys. Lett. 1976,28, 671–673. 9. Pearce, J.M. Industrial symbiosis of very large-scalephotovoltaic manufacturing.Renew. Energy2008,33, 1101–1108. 10. Wronski, C.R.; Pearce, J.M.; Koval, R.J.; Ferlauto, A.S.; Collins, R.W. Progress in Amorphous Silicon Based Solar Cell Technology. Available online: http://www.rio12.com/rio02/proceedings/pdf/067_Wronski.pdf (accessed on 13October2015). 11. Collins, R.W.; Ferlauto, A.S.; Ferreira, G.M.; Chen, C.; Koh, J.; Koval, R.J.; Lee, Y.; Pearce, J.M.; Wronski, C.R. Evolution of microstructure and phase in amorphous, protocrystalline, and microcrystalline silicon studied by real time spectroscopic ellipsometry.SolarEnergyMater. SolarCells2003,78, 143–180. 12. Deckman, H.W.; Wronski, C.R.; Witzke, H.; Yablonovitch, E. Optically enhanced amorphoussiliconsolarcells.Appl. Phys. Lett. 1983,42, 968–970. 13. Atwater, H.A.; Polman, A. Plasmonics for improved photovoltaic devices.Nat.Mater. 2010,9, 205–213. 14. Derkacs,D.;Lim,S.H.;Matheu,P.;Mar,W.;Yu,E.T.Improvedperformanceofamorphous silicon solar cells via scattering from surface plasmon polaritons in nearby metallic nanoparticles.Appl. Phys. Lett. 2006,89, 093103–093105. 15. Gwamuri, J.; Güney, D.Ö.; Pearce, J.M. Advances in Plasmonic Light Trapping in Thin-Film Solar Photovoltaic Devices. In Solar Cell. Nanotechnology; Tiwari, A., Boukherroub, R., Maheshwar Sharon, M., Eds.; Wiley: Hoboken, NJ, USA, 2013; pp.241–269. 16. Spinelli,P.; Ferry,V.E.; van deGroep, J.; van Lare, M.; Verschuuren, M.A.; Schropp, R.E.I.; Atwater, H.A.; Polman, A. Plasmonic light trapping in thin-film Si solar cells. J.Opt. 2012,14, 024002–024012. 17. Cai,W.;Salaev,V.M.OpticalMetamaterials: FundamentalsandApplications,1sted.;Springer: NewYork,NY,USA,2010;p.278. 159
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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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