Growing perovskite into polymers for easy-processable optoelectronic devices

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Abstract

Here we conceive an innovative nanocomposite to endow hybrid perovskites with the easy processability of polymers, providing a tool to control film quality and material crystallinity. We verify that the employed semiconducting polymer, poly[2-methoxy-5-(2-ethylhexyloxy)-1,4-phenylenevinylene] (MEH-PPV), controls the self-assembly of CH 3 NH 3 PbI 3 (MAPbI 3) crystalline domains and favors the deposition of a very smooth and homogenous layer in one straightforward step. This idea offers a new paradigm for the implementation of polymer/perovskite nanocomposites towards versatile optoelectronic devices combined with the feasibility of mass production. As a proof-of-concept we propose the application of such nanocomposite in polymer solar cell architecture, demonstrating a power conversion efficiency up to 3%, to date the highest reported for MEH-PPV. On-purpose designed polymers are expected to suit the nanocomposite properties for the integration in diverse optoelectronic devices via facile processing condition.

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Masi, S., Colella, S., Listorti, A., Roiati, V., Liscio, A., Palermo, V., … Gigli, G. (2015). Growing perovskite into polymers for easy-processable optoelectronic devices. Scientific Reports, 5. https://doi.org/10.1038/srep07725

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