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Synthesis and properties of push–pull porphyrins as sensitizers for NiO based dye-sensitized solar cells
Author(s) -
Antoine Maufroy,
Ludovic Favereau,
Frédéric B. Anne,
Yann Pellegrin,
Errol Blart,
Muriel Hissler,
Denis Jacquemin,
Fabrice Odobel
Publication year - 2015
Publication title -
journal of materials chemistry a
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.637
H-Index - 212
eISSN - 2050-7488
pISSN - 2050-7496
DOI - 10.1039/c4ta05974c
Subject(s) - non blocking i/o , dye sensitized solar cell , zinc , recombination , photochemistry , chemistry , push pull , charge (physics) , materials science , optoelectronics , electrode , physics , catalysis , organic chemistry , electrical engineering , biochemistry , engineering , electrolyte , quantum mechanics , gene
In the above manuscript, the use of the porphyrin systems as sensitizers in nano-crystalline NiO-based photocathodes was mentioned in the main text instructing the reader to “see Experimental part for details”, however, this should read “see the electronic supplementary information (ESI) for details”.International audienceZinc porphyrins derivatives were prepared and investigated in NiO-based p-type dye sensitized solar cells. The first series consist of trans disubstituted push-pull porphyrins containing a nitrophenyl unit as electron withdrawing group and a benzoic acid unit as anchoring group. An ethynyl spacer was introduced between the porphyrin meso positions and the nitrophenyl or/and the benzoic acid. In a second series a secondary electron acceptor such as benzyl-viologen or a naphthalene diimide was appended to the porphyrin. All the compounds were characterized by absorption and emission spectroscopies, theoretical calculations and by electrochemistry. The fast charge recombination certainly limits the photovoltaic performances of the first series, which remain modest (Jsc ≈ 0.5 mA/cm 2 , Voc≈ 110 mV, ff ≈ 36% and PCE ≈ 0.02%) compared to highly performing sensitizers for NiO

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