4.6 Article

Cooperative assembly of an active layer utilizing the synergistic effect of a functional fullerene triad as an acceptor for efficient P3HT-based PSCs

期刊

JOURNAL OF MATERIALS CHEMISTRY A
卷 3, 期 35, 页码 17991-18000

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/c5ta03801d

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资金

  1. National Natural Science Foundation of China [21204057, 91333204, 51422306]
  2. Jiangsu Provincial Natural Science Foundation [BK2012213]

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We report the cooperative assembly of the fullerene-styrene cyano-(octyloxy) benzene triad (PCBB-CNC8) and poly(3-hexylthiophene) (P3HT) to form an active layer of polymer solar cells (PSCs) with a well-defined microstructure and an enhanced stability of morphology. A favorable synergistic effect of the three functional moieties (C-60, styrene cyano and tri(octyloxy) chains) in PCBB-CN-C8 can not only induce P3HT to assemble into long-range ordered periodic fibrils giving an interpenetrating network but also can form PCBB-CN-C8 crystallized domains without the need for external treatment. The characterization of the microstructure and morphology of P3HT: PCBB-CN-C8 blend films by two-dimensional grazing incidence X-ray diffraction, transmission electron microscopy and atomic force microscopy reveals that the P3HT fibrils possess a highly crystallized lamellar phase, and the spacing of the periodic P3HT fibrils is approximately 10 nm depending on the PCBB-CN-C8 crystallites, which fill in the P3HT interpenetrating network. Bulk heterojunction PSCs based on P3HT: PCBB-CN-C8 exhibit an improved open-circuit voltage and an excellent power conversion efficiency of 4.20%, which is greater than that of control PSCs based on P3HT: PCBB-C8 and the devices based on P3HT: PCBM with thermal annealing. We believe that the cooperative assembly of the active layer using the synergistic effect of the fullerene triad is a general approach that can be used to develop external treatment-free technology and improve the morphological stability of the active layer and photovoltaic performance.

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