Abstract

The synthesis of well-defined rod–coil block copolymers consisting of P3HT donor and C60 acceptor chromophores (P3HT-b-P(SxAy)-C60) in a molecular architecture is reported for use in bulk-heterojunction (BHJ) solar cells. In thin films of the resulting block copolymer, reproducible self-assembly into well-defined “nanofibrils” is observed. This is the first example of a block copolymer containing a C60 derivative that shows exclusively a nanofibrilar structure. We have investigated the potential utility of the block copolymer as a “surfactant” for controlling the interface morphology of the P3HT:PCBM donor–acceptor phase domains within the composite. We find a substantial improvement in device performance when 5% of block copolymer are introduced to the P3HT:PCBM blend system, resulting in ca. 35% improved efficiency relative to the P3HT:PCBM solar cell fabricated without the “surfactant”.

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