Abstract

Synthesis, characterization, molecular modeling, and photovoltage responses of four phthalocyanine–fullerene (Pc-C60) dyads with two polar (−OH) side chains are described. The synthesized dyads have polar tails either on the Pc (electron donor D) side or on the fullerene (electron acceptor A) side of the dyad, providing a possibility to produce oriented donor–acceptor (D–A) monolayers with revised electron transfer direction when deposited on an aqueous subphase or on a solid surface. In the dyads, phthalocyanine and fullerene have different mutual orientations: in the trans-dyads they have face-to-face orientation, while in the cis-dyads the orientation is face-to-edge. Molecular modeling was used to examine and confirm the spatial arrangements of the synthesized dyads. The Pc-C60 dyads were deposited successfully onto solid substrates as highly oriented monolayers using the Langmuir–Schafer method. Formation of a vertically oriented monolayer and the following electron transfer from the photoexcited pht...

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