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68. Harms, H.A.; Tetreault, N.; Pellet, N.; Bensimon, M.; Gratzel, M. Mesoscopic
photosystems for solar light harvesting and conversion: Facile and reversible
transformationofmetal-halideperovskites.FaradayDiscuss. 2014,176, 251–269.
69. Dualeh, A.; Gao, P.; Seok, S.I.; Nazeeruddin, M.K.; Grätzel, M. Thermal behavior of
methylammoniumlead-trihalideperovskitephotovoltaic lightharvesters.ChemMater.
2014,26, 6160–6164.
70. Park,B.-W.; Jain,S.M.;Zhang,X.;Hagfeldt,A.;Boschloo,G.;Edvinsson,T.Resonance
ramanandexcitationenergydependentchargetransfermechanisminhalide-substituted
hybridperovskitesolarcells.AcsNano2015,9, 2088–2101.
71. Wakamiya, A.; Endo, M.; Sasamori, T.; Tokitoh, N.; Ogomi, Y.; Hayase, S.; Murata, Y.
Reproducible fabrication of efficient perovskite-based solar cells: X-ray crystallographic
studiesonthe formationofCH3NH3PbI3 layers.Chem. Lett. 2014,43, 711–713.
72. Hao, F.; Stoumpos, C.C.; Liu, Z.; Chang, R.P.H.; Kanatzidis, M.G. Controllable perovskite
crystallization at a gas-solid interface for hole conductor-free solar cells with steady
powerconversionefficiencyover10%. J.Am.Chem. Soc. 2014,136, 16411–16419.
73. Shen, D.; Yu, X.; Cai, X.; Peng, M.; Ma, Y.; Su, X.; Xiao, L.; Zou, D. Understanding the
solvent-assisted crystallization mechanism inherent in efficient organic-inorganic halide
perovskitesolarcells. J.Mater. Chem.A2014,2, 20454–20461.
74. Li, Y.; Cooper, J.K.; Buonsanti, R.; Giannini, C.; Liu, Y.; Toma, F.M.; Sharp, I.D.
Fabrication of planar heterojunction perovskite solar cells by controlled low-pressure
vaporannealing. J.Phys. Chem. Lett. 2015,6, 493–499.
75. Brixner, L.H.; Chen, H.Y.; Foris, C.M. X-ray study of the PbCl2-xIx and PbBr2-xIx systems.
J.SolidStateChem. 1981,40, 336–343.
76. Im, J.-H.; Luo, J.; Franckevicˇius, M.; Pellet, N.; Gao, P.; Moehl, T.; Zakeeruddin, S.M.;
Nazeeruddin,M.K.;Grätzel,M.;Park,N.-G.Nanowireperovskitesolarcell.NanoLett.
2015,15, 2120–2126.
77. Ng, A.; Ren, Z.; Shen, Q.; Cheung, S.H.; Gokkaya, H.C.; Bai, G.; Wang, J.; Yang, L.;
So, S.K.; Djurisic, A.B.; et al. Efficiency enhancement by defect engineering in perovskite
photovoltaiccellspreparedusingevaporatedPbI2/CH3NH3Imultilayers. J.Mater. Chem.
A2015,3, 9223–9231.
78. Zhu, F.; Men, L.; Guo, Y.; Zhu, Q.; Bhattacharjee, U.; Goodwin, P.M.; Petrich, J.W.;
Smith, E.A.; Vela, J. Shape evolution and single particle luminescence of organometal
halideperovskitenanocrystals.AcsNano2015,9, 2948–2959.
79. Ng, T.-W.; Chan, C.-Y.; Lo, M.-F.; Guan, Z.Q.; Lee, C.-S. Formation chemistry of
perovskiteswithmixediodide/chloridecontentandtheimplicationsonchargetransport
properties. J.Mater. Chem.A2015,3, 9081–9085.
80. Moore,D.T.; Sai,H.; Tan,W.K.; Estroff, L.A.; Wiesner, U. Impact of theorganichalide salt
onfinalperovskitecompositionforphotovoltaicapplications.APLMater. 2014,2.
81. Xu,Y.;Zhu,L.;Shi, J.;Lv,S.;Xu,X.;Xiao, J.;Dong, J.;Wu,H.;Luo,Y.;Li,D.; etal. Efficient
hybridmesoscopicsolarcellswithmorphology-controlledCH3NH3PbI3-xClx derived
fromtwo-stepspincoatingmethod.AcsAppl.Mater. Inter. 2015,7, 2242–2248.
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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
- Categories
- Naturwissenschaften Physik
- Technik