Dicyanovinylene-Substituted Oligothiophenes for Organic Solar Cells
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Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/978-3-319-28338-8_3
Reference44 articles.
1. Schulze K, Uhrich C, Schüppel R, Leo K, Pfeiffer M, Brier E, Reinold E, Bäuerle P (2006) Efficient vacuum-deposited organic solar cells based on a new low-bandgap oligothiophene and fullerene C60. Adv Mater 18(21):2872–2875
2. Meerheim R, Körner C, Leo K (2014) Highly efficient organic multi-junction solar cells with a thiophene based donor material. Appl Phys Lett 105(6):063306
3. Schueppel R, Schmidt K, Uhrich C, Schulze K, Wynands D, Brédas J, Brier E, Reinold E, Bu HB, Baeuerle P, Maennig B, Pfeiffer M, Leo K (2008) Optimizing organic photovoltaics using tailored heterojunctions: a photoinduced absorption study of oligothiophenes with low band gaps. Phys Rev B 77(8):085311
4. Fitzner R, Reinold E, Mishra A, Mena-Osteritz E, Ziehlke H, Körner C, Leo K, Riede M, Weil M, Tsaryova O, WeißA, Uhrich C, Pfeiffer M, Bäuerle P (2011) Dicyanovinyl-substituted oligothiophenes: structure-property relationships and application in vacuum-processed small molecule organic solar cells. Adv Funct Mater 21(5):897–910
5. Fitzner R, Elschner C, Weil M, Uhrich C, Körner C, Riede M, Leo K, Pfeiffer M, Reinold E, Mena-Osteritz E, Bäuerle P (2012) Interrelation between crystal packing and small-molecule organic solar cell performance. Adv Mater 24(5):675–680
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