Building intermixed donor-acceptor architectures for water-processable organic photovoltaics

A modified synthesis method for aqueous nanoparticle printing inks, based upon vacuum-assisted solvent removal, is reported. Poly(3-hexylthiophene):phenyl C61 butyric acid methyl ester nanoparticle inks were prepared via this modified miniemulsion method, leading to both an improvement in photoactiv...

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Veröffentlicht in:Physical chemistry chemical physics : PCCP 2019-03, Vol.21 (10), p.5705-5715
Hauptverfasser: Marks, Melissa, Holmes, Natalie P, Sharma, Anirudh, Pan, Xun, Chowdhury, Riku, Barr, Matthew G, Fenn, Coralie, Griffith, Matthew J, Feron, Krishna, Kilcoyne, A L David, Lewis, David A, Andersson, Mats R, Belcher, Warwick J, Dastoor, Paul C
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Sprache:eng
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Zusammenfassung:A modified synthesis method for aqueous nanoparticle printing inks, based upon vacuum-assisted solvent removal, is reported. Poly(3-hexylthiophene):phenyl C61 butyric acid methyl ester nanoparticle inks were prepared via this modified miniemulsion method, leading to both an improvement in photoactive layer morphology and a substantial reduction in the ink fabrication time. A combination of UV-visible spectroscopy, photoluminescence spectroscopy and scanning transmission X-ray microscopy measurements revealed a nanoparticle morphology comprising highly intermixed donor-acceptor domains. Consistent with these measurements, dynamic mechanical thermal analysis of the nanoparticles showed a glass transition temperature (Tg) of 104 °C, rather than a pure polymer phase or pure fullerene phase Tg. Together the spectroscopy, microscopy and thermomechanical data indicate that rapid solvent removal generates a more blended nanoparticle morphology. As such, this study highlights a new experimental lever for optimising nanostructure in the photoactive layer of nanoparticulate organic photovoltaic devices by enabling highly intermixed donor-acceptor architectures to be built from customised nanoparticulate inks.
ISSN:1463-9076
1463-9084
DOI:10.1039/c8cp07137c