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82. Pistor, P.; Borchert, J.; Fränzel, W.; Csuk, R.; Scheer, R. Monitoring the phase formation of co-evaporated leadhalideperovskite thinfilmsby in situXRD. J.Phys. Chem. Lett. 2014, 5, 3308–3312. 83. Williams, A.E.; Holliman, P.J.; Carnie, M.J.; Davies, M.L.; Worsley, D.A.; Watson, T.M. Perovskite processing for photovoltaics: A spectro-thermal evaluation. J.Mater. Chem.A 2014,2, 19338–19346. 84. Yantara, N.; Yanan, F.; Shi, C.; Dewi, H.A.; Boix, P.P.; Mhaisalkar, S.G.; Mathews, N. UnravellingtheeffectsofCladdition insinglestepCH3NH3PbI3 perovskitesolarcells. Chem.Mater. 2015,27, 2309–2314. 85. Song,Z.;Watthage,S.C.;Phillips,A.B.;Tompkins,B.L.;Ellingson,R.J.;Heben,M.J. Impact ofprocessing temperature andcompositionon the formation ofmethylammoniumlead iodideperovskites.Chem.Mater. 2015,27, 4612–4619. 86. Tan, K.W.; Moore, D.T.; Saliba, M.; Sai, H.; Estroff, L.A.; Hanrath, T.; Snaith, H.J.; Wiesner, U. Thermally induced structural evolution and performance of mesoporous blockcopolymer-directedaluminaperovskitesolarcells.AcsNano2014,8, 4730–4739. 87. Zhou, H.; Chen, Q.; Li, G.; Luo, S.; Song, T.-b.; Duan, H.-S.; Hong, Z.; You, J.; Liu, Y.; Yang, Y. Interface engineering of highly efficient perovskite solar cells.Science2014,345, 542–546. 88. Yu,H.;Wang,F.;Xie,F.;Li,W.;Chen, J.;Zhao,N.Theroleofchlorine in theformation processof“CH3NH3PbI3-xClx”perovskite.Adv. Funct.Mater. 2014,24, 7102–7108. 89. Song, T.-B.; Chen, Q.; Zhou, H.; Luo, S.; Yang, Y.; You, J. Unraveling film transformations and device performance of planar perovskite solar cells.NanoEnergy2015,12, 494–500. 90. Grancini,G.;Marras,S.;Prato,M.;Giannini,C.;Quarti,C.;DeAngelis,F.;DeBastiani,M.; Eperon, G.E.; Snaith, H.J.; Manna, L.; et al. The impact of the crystallization processes on the structural and optical properties of hybrid perovskite films for photovoltaics. J.Phys. Chem. Lett. 2014,5, 3836–3842. 91. Pathak, S.; Sepe, A.; Sadhanala, A.; Deschler, F.; Haghighirad, A.; Sakai, N.; Goedel, K.C.; Stranks,S.D.;Noel,N.;Price,M.; et al. Atmospheric influenceuponcrystallizationand electronicdisorderandits impactonthephotophysicalpropertiesoforganic-inorganic perovskitesolarcells.AcsNano2015,9, 2311–2320. 92. Yang, S.; Zheng, Y.C.; Hou, Y.; Chen, X.; Chen, Y.; Wang, Y.; Zhao, H.; Yang, H.G. Formation mechanism of freestanding CH3NH3PbI3 functional crystals: In situ transformationvsdissolution-crystallization.Chem.Mater. 2014,26, 6705–6710. 93. Shkrob, I.A.; Marin, T.W. Charge trapping in photovoltaically active perovskites and relatedhalogenoplumbatecompounds. J.Phys. Chem. Lett2014,5, 1066–1071. 94. Wang,Q.;Yun, J.-H.;Zhang,M.;Chen,H.;Chen,Z.-G.;Wang,L. Insight into the liquid stateoforgano-leadhalideperovskitesandtheirnewroles indye-sensitizedsolarcells. J.Mater. ChemA2014,2, 10355–10358. 95. Stamplecoskie, K.G.; Manser, J.S.; Kamat, P.V. Dual nature of the excited state in organic-inorganic leadhalideperovskites.Energ. Environ. Sci. 2015,8, 208–215. 112
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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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