Solution processable quinacridone based materials as acceptor for organic heterojunction solar cells

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Abstract

Two series of novel quinacridone (QA) based materials that combined a strong absorption over a broad range in visible region with good electrical characteristics, which were used as the new electron-accepting materials for organic solar cells, are explored. Unique cyclic compounds 16 are synthesized by incorporating electron withdrawing groups (CN, COOH) at carbonyl position of alkyl substituted quinacridones, which lead to the compounds possessing the characteristics of solution-processed and being suitable for photovoltaic applications. Heterojunction solar cells with simple device configuration using these soluble materials as acceptor and effective donor poly (3-hexyl thiophene) (P3HT) were fabricated. The maximum power conversion efficiency (PCE) achieved in the solar cell based on compound 5 is 0.42% under simulated AM 1.5 solar irradiation with Jsc=1.80 mA cm-2, Voc=0.50 V and FF=47%. Although the aimed devices just exhibit moderate PCE, our results clearly suggest that the new-type electron-accepting materials different from fullerene have great potential as acceptor in heterojunction solar cell due to many advantages of the QA derivatives such as relatively inexpensive, good electrochemical stability and could be readily modified. © 2011 Elsevier B.V.

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Javed, I., Zhang, Z., Peng, T., Zhou, T., Zhang, H., Issa Khan, M., … Wang, Y. (2011). Solution processable quinacridone based materials as acceptor for organic heterojunction solar cells. Solar Energy Materials and Solar Cells, 95(9), 2670–2676. https://doi.org/10.1016/j.solmat.2011.05.040

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