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Multilayer rapid-drying blade coating for organic solar cells by low boiling point solvents
Journal article   Peer reviewed

Multilayer rapid-drying blade coating for organic solar cells by low boiling point solvents

En-Chen Chen, Pei-Ting Tsai, Bo-Jie Chang, Chun-Ming Wang, Hsin-Fei Meng, Jia-Ying Tsai, Yu-Fan Chang, Zhi-Kuan Chen, Chang-Hung Li, Yung-Hsuan Hsu, …
Japanese Journal of Applied Physics, Vol.53(6), 062301
2014

Abstract

A bulk heterojunction organic solar cell with poly(3-hexylthiophene) (P3HT) as the donor and (6,6)-phenyl-C61-butyric acid methyl ester (PCBM) as the acceptor is deposited using blade coating on a hot plate at 80 °C with hot air of 70 °C applied from above. In contrast to the 30 min of conventional dichlorobenzene solvent annealing, the rapid-drying blade coating forms a dry film in 1 s. The fabrication throughput is substantially enhanced. The blade-coated film has a smoother surface roughness of 3.5nm compared with 10.5nm for solvent annealing; however, the desired phase separation in the 50nm scale forms despite the rapid drying. A single layer solar cell exhibits power conversion efficiency of 4.1% with blade coating in chlorobenzene, which is the same as solvent annealing device. A multilayer device with carrier blocking layers fabricated entirely of the less toxic toluene also exhibits efficiency of 4.1%. © 2014 The Japan Society of Applied Physics.

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