4.8 Article

An Isomeric Solid Additive Enables High-Efficiency Polymer Solar Cells Developed Using a Benzo-Difuran-Based Donor Polymer

Journal

ADVANCED MATERIALS
Volume 35, Issue 26, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adma.202301231

Keywords

benzo[1,2-b:4,5-b']difuran; isomeric solid additives; organic solar cells; conversion

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Currently, the use of benzo-dithiophene (BDT) units is dominating the development of high-efficiency organic photovoltaic devices. However, researchers have explored the use of benzo-difuran (BDF) units to diversify the choices of building blocks for donor polymers. In this study, a BDF-based polymer donor achieved the highest efficiency reported for BDF donor materials (18.4%) with the aid of a solid additive (2-chloronaphthalene), which showed significant effects in optimizing morphology and enhancing device parameters.
Currently, nearly all high-efficiency organic photovoltaic devices use donor polymers based on the benzo-dithiophene (BDT) unit. To diversify the choices of building blocks for high-performance donor polymers, the use of benzo-difuran (BDF) units is explored, which can achieve reduced steric hindrance, stronger molecular packing, and tunable energy levels. In previous research, the performance of BDF-based devices lagged behind those of BDT-based devices. In this study, a high efficiency (18.4%) is achieved using a BDF-based polymer donor, which is the highest efficiency reported for BDF donor materials to date. The high efficiency is enabled by a donor polymer (D18-Fu) and the aid of a solid additive (2-chloronaphthalene), which is the isomer of the commonly used additive 1-chloronaphthalene. These results revealed the significant effect of 2-chloronaphthalene in optimizing the morphology and enhancing the device parameters. This work not only provides a new building block that can achieve an efficiency comparable to dominant BDT units but also proposes a new solid additive that can replace the widely used 1-chloronaphthalene additive.

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