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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
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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