| Literature DB >> 31057182 |
Astrid-Caroline Knall1,2, Sebastian Franz Hoefler1, Manuel Hollauf1, Ferula Thaler1, Sven Noesberger1, Ilie Hanzu1, Heike Ehmann2, Mathias Hobisch3, Stefan Spirk3, Shuguang Wen4, Renqiang Yang4, Thomas Rath1, Gregor Trimmel1.
Abstract
Herein, we report the synthesis of a novel, tetrazine-based conjugated polymer. Tetrazines have the benefit of being strong electron acceptors, while little steric hindrance is imposed on the flanking thiophene rings. Conversion of a suitably substituted nitrile precursor led to 3,6-bis(5-bromo-4-(2-octyldodecyl)thiophen-2-yl)-1,2,4,5-tetrazine (2OD-TTz). Palladium-catalyzed copolymerization of 2OD-TTz with a bithiophene monomer yielded an alternating tetrazine-quaterthiophene copolymer (PTz4T-2OD). The polymer PTz4T-2OD showed an optical band gap of 1.8 eV, a deep HOMO energy level of - 5.58 eV and good solubility. In combination with the non-fullerene acceptor ITIC-F, solar cells with power conversion efficiencies of up to 2.6% were obtained.Entities:
Year: 2019 PMID: 31057182 PMCID: PMC6472551 DOI: 10.1007/s10853-019-03551-3
Source DB: PubMed Journal: J Mater Sci ISSN: 0022-2461 Impact factor: 4.220
Scheme 1Synthesis of 2OD-TTz (see supporting information for detailed synthetic procedures)
Scheme 2Synthesis of PTz4T-2OD
Molecular weight and thermal properties of PTz4T-2OD
| Dispersity | |||
|---|---|---|---|
| 24.1 | 59.3 | 2.46 | 288 (first step), 460 (second step) |
Figure 1a Thermogravimetric analysis curve of PTz4T-2OD—the blue arrow marks the decomposition step of the tetrazine ring—and b absorption spectrum of a PTz4T-2OD thin film
Optoelectronic properties of PTz4T-2OD
| EIP, HOMOa/LUMOb (eV) | EEAa (eV) | ||||
|---|---|---|---|---|---|
| 583 | 1.87 | 688 | 1.80 | − 5.58/− 3.78 | − 3.10 |
aDetermined via cyclic voltammetry
bCalculated via HOMO + Egopt
Figure 2a 2D-GIWAXS patterns and b scattering profiles for the in-plane and out-of-plane directions
Figure 3AFM topography and phase images of a pristine PTz4T-2OD film (a, c) and a PTz4T-2OD–ITIC-F blend (b, d) on a glass/ITO/ZnO substrate. The image sizes are 2 µm × 2 µm
Photovoltaic performance parameters of PTz4T-2OD–ITIC-F solar cells
| Device architecture | FF (%) | PCE (%) | ||||
|---|---|---|---|---|---|---|
| Inverted, ZnOa | 0.89 ± 0.02 | 6.31 ± 0.40 | 42.6 ± 2.6 | 2.41 ± 0.31 | 34.4 ± 5.0 | 0.57 ± 0.15 |
| Best cell | 0.91 | 6.55 | 43.7 | 2.59 | 31.9 | 0.43 |
| Normal, PEDOT–PSS | 0.87 ± 0.01 | 7.05 ± 0.11 | 37.5 ± 0.4 | 2.25 ± 0.08 | 43.4 ± 1.3 | 0.33 ± 0.06 |
| Best cell | 0.89 | 7.16 | 37.7 | 2.35 | 43.7 | 0.32 |
aAveraged over four devices
Figure 4aJ–V curves of PTz4T-2OD–ITIC-F non-fullerene organic solar cells in inverted (ZnO, red) and normal (PEDOT–PSS, blue) device configurations; b EQE spectra of PTz4T-2OD–ITIC-F solar cells in inverted and normal architectures plotted together with the cumulated JSC