Engineering of W-shaped benzodithiophenedione-based small molecular acceptors with improved optoelectronic properties for high efficiency organic solar cells
In the current study, with the objective to improve the overall performance of organic solar cells, seven new W-shaped small molecular acceptors were developed theoretically by the end-group alteration of the reference (WR) molecule. The MPW1PW91 functional with the basis set 6-31G(d,p) was used to...
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Veröffentlicht in: | RSC advances 2022-08, Vol.12 (34), p.2181-2182 |
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Sprache: | eng |
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Zusammenfassung: | In the current study, with the objective to improve the overall performance of organic solar cells, seven new W-shaped small molecular acceptors were developed theoretically by the end-group alteration of the reference
(WR)
molecule. The MPW1PW91 functional with the basis set 6-31G(d,p) was used to explore the optoelectronic properties of the
WR
and
W1W7
molecules and the time-dependent self-consistent filed (TD-SCF) simulation was used to investigate the solvent-state calculations. The several explored photovoltaic attributes were the absorption spectra, excitation energies, bandgap between the FMOs, oscillator strength, full width at half maximum, light-harvesting efficiency, transition density matrices, open-circuit voltage, fill factor, density of states, binding energy, interaction coefficient,
etc.
Overall, the results revealed a bathochromic shift in the absorption maxima (
max
), a reduced HOMOLUMO gap (
E
gap
), and smaller excitation energy (
E
x
) of the altered molecules as compared to the
WR
molecule. Some of the optoelectronic aspects of a well-known fused ring based acceptor named
Y6
are also compared with the studied W-shaped molecules. Additionally, the
W1
molecule presented the smallest
E
gap
, along with highest
max
and the lowest
E
x
, amongst all, in both the evaluated media (gas and solvent). The open circuit voltage (
V
OC
) of all the considered small molecular acceptors was calculated by pairing them with the
PTB7-Th
donor. Here,
W6
and
W7
displayed the best results for the
V
OC
(1.48 eV and 1.51 eV), normalized
V
OC
(57.25 and 58.41) and FF (0.9131 and 0.9144). Consequently, in light of the results of this research, the altered molecules could be considered for practical implementation in the manufacturing of OSCs with improved photovoltaic capabilities.
The developed molecules have a reduced band gap and lower excitation energy. Their
V
OC
was calculated by making complexes of them with the PTB7-Th donor. |
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ISSN: | 2046-2069 2046-2069 |
DOI: | 10.1039/d2ra03280e |