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References 1. Lin,H.W.;Chang, J.H.;Huang,W.C.;Lin,Y.T.;Lin,L.Y.;Lin,F.;Wong,K.T.;Wang,H.F.; Ho, R.M.; Meng, H.F. Highly efficient organic solar cells using a solution-processed active layer with a small molecule donor and pristine fullerene. J.Mater. Chem.A2014,2, 3709–3714. 2. Mishra,A.;Bäuerle,P.Smallmoleculeorganicsemiconductorsonthemove: Promises for futuresolarenergytechnology.Angew.Chem. Int. Ed. 2012,51, 2020–2067. 3. Zhou, J.; Zuo, Y.; Wan, X.; Long, G.; Zhang, Q.; Ni, W.; Liu, Y.; Li, Z.; He, G.; Li, C. Solution-processed and high-performance organic solar cells using small molecules with abenzodithiopheneunit. J.Am.Chem. Soc. 2013,135, 8484–8487. 4. Cabanetos, C.M.; El Labban, A.; Bartelt, J.A.; Douglas, J.D.; Mateker, W.R.; Fréchet, J.M.; McGehee, M.D.; Beaujuge, P.M. Linear side chains in benzo [1, 2-b: 4, 5-b’ 4dithiophene–thieno[3,4-c]pyrrole-4,6-dionepolymersdirect self-assemblyandsolar cellperformance. J.Am.Chem. Soc. 2013,135, 4656–4659. 5. Dou, L.; Gao, J.; Richard, E.; You, J.; Chen, C.C.; Cha, K.C.; He, Y.; Li, G.; Yang, Y. Systematic investigation of benzodithiophene-and diketopyrrolopyrrole-based low-bandgap polymers designed for single junction and tandem polymer solar cells. J.Am.Chem. Soc. 2012,134, 10071–10079. 6. He, Z.; Zhong, C.; Su, S.; Xu, M.; Wu, H.; Cao, Y. Enhanced power-conversion efficiency inpolymersolarcellsusinganinverteddevicestructure.Nat. Protoc. 2012,6, 591–595. 7. Huang, Y.; Wen, W.; Mukherjee, S.; Ade, H.; Kramer, E.J.; Bazan, G.C. High-molecular-weight insulatingpolymerscan improvetheperformanceof molecular solarcells.Adv.Mater. 2014,26, 4168–4172. 8. Walker,B.; Kim,C.;Nguyen,T.Q.Smallmoleculesolution-processedbulkheterojunction solarcells†.Chem.Mater. 2010,23, 470–482. 9. Chen, W.; Nikiforov, M.P.; Darling, S.B. Morphology characterization in organic and hybridsolarcells.EnergyEnviron. Sci. 2012,5, 8045–8074. 10. Betancur,R.;Romero-Gomez,P.;Martinez-Otero,A.;Elias,X.;Maymó,M.;Martorell, J. Transparent polymer solar cells employing a layered light-trapping architecture. Nat.Photonics2013,7, 995–1000. 11. Dennler, G.; Scharber, M.C.; Brabec, C.J. Polymer-fullerene bulk-heterojunction solar cells.Adv.Mater. 2009,21, 1323–1338. 12. Nikiforov, M.P.; Lai, B.; Chen, W.; Chen, S.; Schaller, R.D.; Strzalka, J.; Maser, J.; Darling, S.B. Detection and role of trace impurities in high-performance organic solar cells.EnergyEnviron. Sci. 2013,6, 1513–1520. 13. Guo,S.; Cao,B.; Wang,W.; Moulin, J.F.; Müller-Buschbaum,P.Effectofalcohol treatment on the performance of ptb7:Pc71bm bulk heterojunction solar cells. ACSAppl. Mater. Interfaces2015,7, 4641–4649. 14. Foertig, A.; Kniepert, J.; Gluecker, M.; Brenner, T.; Dyakonov, V.; Neher, D.; Deibel, C. Nongeminateandgeminaterecombination inptb7:Pcbmsolarcells.Adv. Funct.Mater. 2014,24, 1306–1311. 11
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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