Page - 12 - in Photovoltaic Materials and Electronic Devices
Image of the Page - 12 -
Text of the Page - 12 -
15. Liao, H.C.; Ho, C.C.; Chang, C.Y.; Jao, M.H.; Darling, S.B.; Su, W.F. Additives for
morphology control in high-efficiency organic solar cells.Mater. today2013,16, 326–336.
16. Chen,W.;Darling,S.B.Understandingtheroleofadditivesinimprovingtheperformance
ofbulkheterojunctionorganicsolarcells.Microsc.Microanal. 2015,21, 2439–2440.
17. Guo, S.; Herzig, E.M.; Naumann, A.; Tainter, G.; Perlich, J.; Müller-Buschbaum, P.
Influence of solvent and solvent additive on the morphology of ptb7 films probed
viax-rayscattering. J.Phys. Chem.B2013,118, 344–350.
18. Lou, S.J.; Szarko, J.M.; Xu, T.; Yu, L.; Marks, T.J.; Chen, L.X. Effects of additives on
the morphology of solution phase aggregates formed by active layer components of
high-efficiencyorganicsolarcells. J.Am.Chem. Soc. 2011,133, 20661–20663.
19. Perez, L.A.; Chou, K.W.; Love, J.A.; van der Poll, T.S.; Smilgies, D.M.; Nguyen, T.Q.;
Kramer, E.J.; Amassian, A.; Bazan, G.C. Solvent additive effects on small molecule
crystallization inbulkheterojunctionsolarcellsprobedduringspincasting.Adv.Mater.
2013,25, 6380–6384.
20. Kniepert, J.; Lange, I.; Heidbrink, J.; Kurpiers, J.; Brenner, T.J.; Koster, L.J.A.; Neher, D.
Effect of solvent additive on generation, recombination, and extraction in ptb7:Pcbm
solar cells: A conclusive experimental and numerical simulation study. J.Phys. Chem.C
2015,119, 8310–8320.
21. Zhao, L.; Zhao, S.; Xu, Z.; Yang, Q.; Huang, D.; Xu, X. A simple method to adjust
the morphology of gradient three-dimensional ptb7-th: Pc 71 bm polymer solar cells.
Nanoscale2015,7, 5537–5544.
22. Hsin-Yi, C.; Lan, S.; Yang, P.C.; Lin, S.H.; Sun, J.Y.; Lin, C.F. Poly (3-hexylthiophene):
Indene-c60 bisadduct morphology improvement by the use of polyvinylcarbazole as
additive.Sol. EnergyMater. Sol. Cells2013,113, 90–95.
23. Bai, Y.; Yu,H.; Zhu,Z.; Jiang, K.; Zhang, T.; Zhao, N.; Yang, S.; Yan, H.High performance
inverted structure perovskite solar cells based on a pcbm: Polystyrene blend electron
transport layer. J.Mater. Chem.A2015,3, 9098–9102.
24. Zhao, L.; Zhao, S.; Xu, Z.; Gong, W.; Yang, Q.; Fan, X.; Xu, X. Influence of morphology of
pcdtbt: Pc71bmontheperformanceofsolarcells.Appl. Phys.A2014,114, 1361–1368.
25. Janssen, R.A.; Nelson, J. Factors limiting device efficiency in organic photovoltaics.
Adv.Mater. 2013,25, 1847–1858.
26. Liang, Y.; Xu, Z.; Xia, J.; Tsai, S.T.; Wu, Y.; Li, G.; Ray, C.; Yu, L. For the bright future–bulk
heterojunction polymer solar cells with power conversion efficiency of 7.4%.Adv.Mater.
2010,22,E135–E138.
27. Ochiai, S.; Imamura, S.; Kannappan, S.; Palanisamy, K.; Shin, P.K. Characteristics and
the effect of additives on the nanomorphology of ptb7/pc 71 bm composite films.
Curr.Appl.Phys. 2013,13, S58–S63.
28. Hu, X.; Wang, M.; Huang, F.; Gong, X.; Cao, Y. 23% enhanced efficiency of polymer solar
cells processedwith 1-chloronaphthaleneas the solventadditive.Synth.Met. 2013,164,
1–5.
29. Malliaras, G.; Salem, J.; Brock, P.; Scott, C. Electrical characteristics and efficiency of
single-layerorganic light-emittingdiodes.Phys. Rev. B1998,58,R13411.
12
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