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12. Unger,E.L.;Bowring,A.R.;Tassone,C.J.;Pool,V.L.;Gold-Parker,A.;Cheacharoen,R.; Stone,K.H.;Hoke,E.T.;Toney,M.F.;McGehee,M.D.Chloride in leadchloride-derived organo-metal halides for perovskite-absorber solar cells. Chem. Mater. 2014, 26, 7158–7165. 13. Dar,M.I.;Arora,N.;Gao,P.;Ahmad,S.;Grätzel,M.;Nazeeruddin,M.K. Investigation regarding the role of chloride in organic-inorganic halide perovskites obtained from chloridecontainingprecursors.NanoLett. 2014,14, 6991–6996. 14. Tripathi, N.; Yanagida, M.; Shirai, Y.; Masuda, T.; Han, L.; Miyano, K. Hysteresis-free and highly stable perovskite solar cells produced via a chlorine-mediated interdiffusion method. J.Mater. Chem.A2015,3, 12081–12088. 15. Starr,D.E.; Sadoughi,G.; Handick, E.;Wilks,R.G.; Alsmeier, J.H.; Kohler,L.; Gorgoi,M.; Snaith, H.J.; Bar, M. Direct observation of an inhomogeneous chlorine distribution in CH3NH3PbI3-xClx layers: Surface depletion and interface enrichment.Energ. Environ. Sci. 2015,8, 1609–1615. 16. Pool, V.L.; Gold-Parker, A.; McGehee, M.D.; Toney, M.F. Chlorine in PbCl2-derived hybrid-perovskitesolarabsorbers.Chem.Mater. 2015,27, 7240–7243. 17. Chae, J.; Dong, Q.; Huang, J.; Centrone, A. Chloride incorporation process in CH3NH3PbI3-xClx perovskites via nanoscale bandgap maps. Nano Lett. 2015, 15, 8114–8121. 18. Mosconi,E.;Amat,A.;Nazeeruddin,M.K.;Grätzel,M.;DeAngelis,F.First-principles modeling of mixed halide organometal perovskites for photovoltaic applications. J.Phys. Chem.C2013,117, 13902–13913. 19. Zheng,F.;Takenaka,H.;Wang,F.;Koocher,N.Z.;Rappe,A.M.First-principlescalculation of the bulk photovoltaic effect in CH3NH3PbI3 and CH3NH3PbI3-xClx. J. Phys. Chem. Lett. 2014,6, 31–37. 20. Buin, A.; Pietsch, P.; Xu, J.; Voznyy, O.; Ip, A.H.; Comin, R.; Sargent, E.H. Materials processingroutes to trap-freehalideperovskites.NanoLett. 2014,14, 6281–6286. 21. Du, M.H. Efficient carrier transport in halide perovskites: Theoretical perspectives. J.Mater. Chem.A2014,2, 9091–9098. 22. Even, J.;Pedesseau,L.;Katan,C.Analysisofmultivalleyandmultibandgapabsorption and enhancement of free carriers related to exciton screening in hybrid perovskites. J.Phys. Chem.C2014,118, 11566–11572. 23. Yin,W.-J.; Shi,T.;Yan,Y.Uniquepropertiesofhalideperovskitesaspossibleoriginsof thesuperiorsolarcellperformance.Adv.Mater. 2014,26, 4653–4658. 24. Li,D.;Liang,C.;Zhang,H.;Zhang,C.;You,F.;He,Z.Spatiallyseparatedchargedensities of electrons and holes in organic-inorganic halide perovskites. J. Appl. Phys. 2015, 117, 074901. 25. Yin, J.; Cortecchia, D.; Krishna, A.; Chen, S.; Mathews, N.; Grimsdale, A.C.; Soci, C. Interfacial charge transfer anisotropy in polycrystalline lead iodide perovskite films. J.Phys. Chem. Lett. 2015, 1396–1402. 107
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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