4 OPV with a Crystalline Organic Pigment Active Layer Up to 10 μm
8 7
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33. Kao, P.-C., Chu, S.-Y., Huang, H.-H., Tseng, Z.-L., Chen, Y.-C.: Improved efficiency of organic
photovoltaic cells using tris (8-hydroxy-quinoline) aluminum as a doping material. Thin Solid
Films 517, 5301–5304 (2009)
34. Wang, D., et al.: Solution-processed organic films of multiple small-molecules and white lightemitting diodes. Org. Electron. 11, 641–648 (2010)
35. Long, Z., et al.: The electroluminescence mechanism of non-doping PhOLEDs based on
CBP/Ir(ppy) 3 investigated by delayed EL measurements. Org. Electron. 28, 225–228 (2016)
36. Chen, Y.-H., et al.: Vacuum-deposited small-molecule organic solar cells with high power
conversion efficiencies by judicious molecular design and device optimization. J. Am. Chem.
Soc. 134, 13616–13623 (2012)
37. Sakai, J., Taima, T., Yamanari, T., Saito, K.: Annealing effect in the sexithiophene:C 70 small
molecule bulk heterojunction organic photovoltaic cells. Sol. Energy Mater. Sol. Cells 93,
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38. Wang, N., Yu, J., Zang, Y., Huang, J., Jiang, Y.: Effect of buffer layers on the performance of
organic photovoltaic cells based on copper phthalocyanine and C 60 . Sol. Energy Mater. Sol.
Cells 94, 263–266 (2010)
39. Sai, H., Matsui, T. and Matsubara, K. Stabilized 14.0%-efficient triple-junction thin-film silicon
solar cell. Appl. Phys. Lett. 109, 183506 (2016)
40. Chattopadhyay, S., et al.: Anti-reflecting and photonic nanostructures. Mat. Sci. Eng. R. 69,
1–35 (2010)
8 7
32. Xiao, X., Bergemann, K.J., Zimmerman, J.D., Lee, K., Forrest, S.R.: Small-molecule planarmixed heterojunction photovoltaic cells with fullerene-based electron filtering buffers. Adv.
Energy Mater. 4, 1301557 (2014)
33. Kao, P.-C., Chu, S.-Y., Huang, H.-H., Tseng, Z.-L., Chen, Y.-C.: Improved efficiency of organic
photovoltaic cells using tris (8-hydroxy-quinoline) aluminum as a doping material. Thin Solid
Films 517, 5301–5304 (2009)
34. Wang, D., et al.: Solution-processed organic films of multiple small-molecules and white lightemitting diodes. Org. Electron. 11, 641–648 (2010)
35. Long, Z., et al.: The electroluminescence mechanism of non-doping PhOLEDs based on
CBP/Ir(ppy) 3 investigated by delayed EL measurements. Org. Electron. 28, 225–228 (2016)
36. Chen, Y.-H., et al.: Vacuum-deposited small-molecule organic solar cells with high power
conversion efficiencies by judicious molecular design and device optimization. J. Am. Chem.
Soc. 134, 13616–13623 (2012)
37. Sakai, J., Taima, T., Yamanari, T., Saito, K.: Annealing effect in the sexithiophene:C 70 small
molecule bulk heterojunction organic photovoltaic cells. Sol. Energy Mater. Sol. Cells 93,
1149–1153 (2009)
38. Wang, N., Yu, J., Zang, Y., Huang, J., Jiang, Y.: Effect of buffer layers on the performance of
organic photovoltaic cells based on copper phthalocyanine and C 60 . Sol. Energy Mater. Sol.
Cells 94, 263–266 (2010)
39. Sai, H., Matsui, T. and Matsubara, K. Stabilized 14.0%-efficient triple-junction thin-film silicon
solar cell. Appl. Phys. Lett. 109, 183506 (2016)
40. Chattopadhyay, S., et al.: Anti-reflecting and photonic nanostructures. Mat. Sci. Eng. R. 69,
1–35 (2010)
