We report on the synthesis of two new dyes to be employed as sensitizers in p-type dye-sensitized solar cells (DSCs). The design of the two new molecules under consideration has been inspired by the state-of-art dye PMI- 6 T-TPA. In particular, a specific engineering of the thiophene-based central core is here considered to favour structural planarity between an oligothiophenic π-spacer (a sexithiophene), and the acceptor and donor units made by peryleneimide (PMI) and triphenylamine (TPA) moieties, respectively. This leads to a wide absorption in the NIR with stabilization of the HOMO energy level in the resulting dyes, as supported by TD-DFT simulations and spectroscopic characterization. When tested as sensitizers in NiOx-based p-type DSCs, A6D (with an Acceptor-π-Donor structure) outperforms both its counterpart with a Donor-π-Donor structure (D6D) and P1, a benchmark dye in the field of p-DSCs. With A6D dye-sensitizer the resulting DSC device presents the quite remarkable value of stabilized efficiency as high as 0.15 % when I-/I3- is employed as redox couple and nanostructured NiOx photocathode is thick less than 2 μm and does not contain any blocking layer. Notwithstanding the panchromatic feature of the sensitizer, A6D-based devices show an average visible transmittance (AVT) of 8%. Such a result paves the way toward the application of these types of multifunctional dyes in semi-transparent solar cells.

A new push–pull dye for semi-transparent p-type dye-sensitized solar cells: tuning conjugation by sexithiophene chain engineering / Scarano, Vincenzo; Gontrani, Lorenzo; Zarate, Ana Yancy Segura; Galliano, Simone; Borrelli, Raffaele; Carbone, Marilena; Dini, Danilo; Mirante, Daniele; Feroci, Marta; Bonomo, Matteo; Mattiello, Leonardo. - In: SOLAR ENERGY. - ISSN 0038-092X. - 265:(2023), pp. 1-19. [10.1016/j.solener.2023.112143]

A new push–pull dye for semi-transparent p-type dye-sensitized solar cells: tuning conjugation by sexithiophene chain engineering

Scarano, Vincenzo
Primo
Investigation
;
Gontrani, Lorenzo
Secondo
Investigation
;
Dini, Danilo
Project Administration
;
Mirante, Daniele
Investigation
;
Feroci, Marta
Formal Analysis
;
Bonomo, Matteo
Validation
;
Mattiello, Leonardo
Supervision
2023

Abstract

We report on the synthesis of two new dyes to be employed as sensitizers in p-type dye-sensitized solar cells (DSCs). The design of the two new molecules under consideration has been inspired by the state-of-art dye PMI- 6 T-TPA. In particular, a specific engineering of the thiophene-based central core is here considered to favour structural planarity between an oligothiophenic π-spacer (a sexithiophene), and the acceptor and donor units made by peryleneimide (PMI) and triphenylamine (TPA) moieties, respectively. This leads to a wide absorption in the NIR with stabilization of the HOMO energy level in the resulting dyes, as supported by TD-DFT simulations and spectroscopic characterization. When tested as sensitizers in NiOx-based p-type DSCs, A6D (with an Acceptor-π-Donor structure) outperforms both its counterpart with a Donor-π-Donor structure (D6D) and P1, a benchmark dye in the field of p-DSCs. With A6D dye-sensitizer the resulting DSC device presents the quite remarkable value of stabilized efficiency as high as 0.15 % when I-/I3- is employed as redox couple and nanostructured NiOx photocathode is thick less than 2 μm and does not contain any blocking layer. Notwithstanding the panchromatic feature of the sensitizer, A6D-based devices show an average visible transmittance (AVT) of 8%. Such a result paves the way toward the application of these types of multifunctional dyes in semi-transparent solar cells.
2023
multifunctional dye; nickel oxide; p-type; DSC; block synthesis; Sensitizer; Solar Cells; TD-DFT; Oligothiophene; DSC
01 Pubblicazione su rivista::01a Articolo in rivista
A new push–pull dye for semi-transparent p-type dye-sensitized solar cells: tuning conjugation by sexithiophene chain engineering / Scarano, Vincenzo; Gontrani, Lorenzo; Zarate, Ana Yancy Segura; Galliano, Simone; Borrelli, Raffaele; Carbone, Marilena; Dini, Danilo; Mirante, Daniele; Feroci, Marta; Bonomo, Matteo; Mattiello, Leonardo. - In: SOLAR ENERGY. - ISSN 0038-092X. - 265:(2023), pp. 1-19. [10.1016/j.solener.2023.112143]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1691296
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