| Literature DB >> 30873402 |
Matteo Bonomo1,2, Nadia Barbero2, Gaia Naponiello1, Marco Giordano2, Danilo Dini1, Claudia Barolo2,3.
Abstract
We report the synthesis of a novel squaraine dye (VG21-C12) and investigate its behavior as p-type sensitizer for p-type Dye-Sensitized Solar Cells. The results are compared with O4-C12, a well-known sensitizer for p-DSC, and sodium hydroxide pretreatment is described as an effective approach to reduce the dye/holes recombination. Various variable investigation such as dipping time, dye loading, photocurrent, and resulting cell efficiency are also reported. Electrochemical impedance spectroscopy (EIS) was utilized for investigating charge transport properties of the different photoelectrodes and the recombination phenomena that occur at the (un)modified electrode/electrolyte interface.Entities:
Keywords: NIR Absorption; NaOH pretreatment; electrochemical impedance spectroscopy; p-type dye-sensitized solar cells; recombination reaction; squaraines
Year: 2019 PMID: 30873402 PMCID: PMC6400885 DOI: 10.3389/fchem.2019.00099
Source DB: PubMed Journal: Front Chem ISSN: 2296-2646 Impact factor: 5.221
Figure 1Structures of VG21-C12 and O4-C12.
Scheme 1Scheme of the synthesis of VG21-C12. Reagents and conditions: (i) 1-iodododecane, acetonitrile, microwave, 155°C, 60 min; (ii) squaric acid, toluene/n-butanol (1:1), MW, 160°C, 30 min; (iii) 5-formyl-2-thienylboronic acid, [PdCl2(dppf)]·CH2Cl2, K2CO3, toluene/MeOH (1:1), microwave, 70°C, 20 min; (iv) cyanoacetic acid, piperidine, acetonitrile, microwave, 100°C, 60 min.
Figure 2UV-Vis absorption spectra of VG21-C12 (green) and O4-C12 (blue) in ethanol solution.
Selected photophysical properties of VG21-C12 in different solvents.
| THF | 701 | 703 | 2 |
| DCM | 696 | 699 | 3 |
| DMSO | 708 | 714 | 6 |
| ACN | 695 | 700 | 5 |
| EtOH | 690 | 701 | 11 |
| MeOH | 691 | 701 | 10 |
Figure 3JV profiles of NiO-based DSCs sensitized with two different squaraine dyes, i.e., O4-C12 (on the left) and VG21-C12 (on the right).
Photoelectrochemical parameters of VG21-C12 and O4-C12-sensitized NiO-based DSCs.
| VG21-C12 | 2 | 116 | 0.459 | 36.7 | 0.020 |
| O4-C12 | 2 | 100 | 0.494 | 37.2 | 0.019 |
| VG21-C12 | 16 | 130 | 0.410 | 35.2 | 0.018 |
| O4-C12 | 16 | 105 | 0.518 | 39.1 | 0.022 |
Sensitization process was performed for 2 and 16 h.
Photoelectrochemical parameters of VG21-C12 and O4-C12-sensitized NiO-based DSCs.
| VG21-C12 | 2 | 2 | 109 | 0.532 | 39.1 | 0.022 |
| O4-C12 | 2 | 2 | 104 | 0.438 | 36.9 | 0.016 |
| VG21-C12 | 2 | 16 | 91 | 0.616 | 37.1 | 0.020 |
| O4-C12 | 2 | 16 | 110 | 0.311 | 36.8 | 0.013 |
The photocathode underwent a pretreatment with NaOH. Sensitization process was performed for 2 and 16 h.
Figure 4IPCE profiles of NiO-based DSCs sensitized with two different squaraine dyes, i.e., O4-C12 (on the left) and VG21-C12 (on the right).
Figure 5EIS analysis of VG21-C12 based devices.
Parameters of VG21-C12-sensitized (un)treated NiO-based DSCs obtained from the fitting of the impedance spectra reported in Figure 5.
| 0 | 2 | 7.2 ± 0.3 | 72 ± 6 | 104 ± 2 | 0.43 |
| 2 | 2 | 6.8 ± 0.5 | 80 ± 5 | 134 ± 3 | 0.41 |
| 0 | 16 | 6.9 ± 0.3 | 54 ± 2 | 176 ± 6 | 0.38 |
| 2 | 16 | 6.6 ± 0.4 | 65 ± 3 | 322 ± 11 | 0.36 |
The relative error on C.