| Literature DB >> 35919141 |
Sahar Javaid Akram1, N M A Hadia2, Javed Iqbal1, Rana Farhat Mehmood3, Saleem Iqbal4, Ahmed M Shawky5, Areeba Asif1, H H Somaily6,7, Muhammad Raheel8, Rasheed Ahmad Khera1.
Abstract
To investigate the consequence of different substitution positions of various π-linkers on the photovoltaic properties of an organic solar cell molecule, we have introduced two series of six three-donor molecules, by the substitution of some effective π-linkers on the A-π-D-π-A type reference molecule IECIO-4F (taken as IOR). In series "a" the thienyl or furyl bridge is directly linked between the donor and acceptor moieties, while in series "b" the phenyl ring of the same bridge is working as the direct point of attachment. The frontier molecular orbitals, density of states, transition density matrix, molecular electrostatic potential surfaces, exciton binding energy, excitation energy, wavelength of maximum absorption, open-circuit voltage, fill factor, and some other photovoltaic attributes of the proposed molecules were analyzed through density functional theory (DFT) and its time-dependent (TD) approach; the TD-DFT method. Though both series of newly derived molecules were a step up from the reference molecule in almost all of the studied characteristics, the "a" series (IO1a to IO3a) seemed to be better due to their desirable properties such as the highest maximum absorption wavelength (λ max), open-circuit voltage, and fill factor, along with the lowest excitation and exciton dissociation energy, etc. of its molecules. Also, the studied morphology, optical characteristics, and electronic attributes of this series of proposed molecules signified the fact that the molecules with thienyl or furyl ring working as the direct link between the acceptor and donor molecules showed enhanced charge transfer abilities, and could provide a maximum quantum yield of the solar energy supplied. This journal is © The Royal Society of Chemistry.Entities:
Year: 2022 PMID: 35919141 PMCID: PMC9297698 DOI: 10.1039/d2ra04097b
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Fig. 1Pictorial representation of reference (IOR) and “a series” of all the scrutinized molecules (donor core is colored black, acceptors are red in colour, while blue, pink, and green represents various bridges).
Comparing the computed bandgaps from four analyzed functionals to the cited bandgap
| Functionals | Computed bandgap | Cited bandgap |
|---|---|---|
| B3LYP | 1.46 | 1.73 |
| CAMB3LYP | 2.05 | — |
| ωB97XD | 2.16 | — |
| MPW1PW91 | 1.56 | — |
Fig. 2Comparative bar graph illustrating λmax from different functionals and their closeness to the cited value of IOR.
Fig. 3GaussView structures of IOR and “a” series of the all the newly reported molecules.
Values of evaluated FMOs and the calculated band gap between them
| Molecules |
|
|
|
|---|---|---|---|
| IOR | −5.37 | −3.39 | 1.98 |
| IO1a | −5.50 | −3.85 | 1.65 |
| IO2a | −5.65 | −4.07 | 1.58 |
| IO3a | −5.70 | −4.10 | 1.60 |
| IO1b | −5.49 | −3.54 | 1.95 |
| IO2b | −5.50 | −3.72 | 1.78 |
| IO3b | −5.53 | −3.74 | 1.79 |
Fig. 4DOS graphs of reference and “a” series of the investigated molecules.
Percentage contribution of different fragments of all the newly presented molecules along with the reference molecule (IOR)
| Molecules | HOMO | LUMO | ||||
|---|---|---|---|---|---|---|
| Donor (%) | Linker (%) | Acceptors (%) | Donor (%) | Linker (%) | Acceptor (%) | |
| IOR | 58.1 | 22.7 | 19.2 | 17.5 | 24.4 | 58.1 |
| IO1a | 40.5 | 30.5 | 29.0 | 21.9 | 56.2 | 21.9 |
| IO2a | 42.6 | 29.8 | 27.6 | 19.4 | 60.0 | 20.7 |
| IO3a | 36.6 | 30.3 | 33.1 | 20.8 | 59.6 | 19.6 |
| IO1b | 65.6 | 24.6 | 9.80 | 11.3 | 51.2 | 37.5 |
| IO2b | 68.6 | 23.6 | 7.80 | 9.30 | 58.1 | 32.6 |
| IO3b | 68.7 | 23.9 | 7.40 | 9.20 | 56.5 | 34.3 |
Fig. 5Bar graphs comparing the λmax of reference with that of the designed molecules in both the gas (left) and solvent (right) phase.
Computed photovoltaic attributes of all the investigated molecules in the gas phase
| Molecules | Computed | Experimental |
|
| LHE | Main configuration |
|---|---|---|---|---|---|---|
| IOR | 734 | 797 | 1.6848 | 2.8479 | 0.9986 | H to L (70%) |
| IO1a | 905 | 1.3716 | 2.2417 | 0.9943 | H to L (69%) | |
| IO2a | 951 | 1.3043 | 2.0534 | 0.9912 | H to L (69%) | |
| IO3a | 952 | 1.3018 | 1.6748 | 0.9789 | H to L (69%) | |
| IO1b | 788 | 1.5735 | 1.9338 | 0.9884 | H to L (69%) | |
| IO2b | 872 | 1.4218 | 1.6237 | 0.9762 | H to L (70%) | |
| IO3b | 868 | 1.4289 | 1.6295 | 0.9765 | H to L (70%) |
Computed photovoltaic attributes of all the investigated molecules in the solvent (chloroform) phase
| Molecules | Computed | Experimental |
|
| LHE | Main configuration |
|---|---|---|---|---|---|---|
| IOR | 794 | 806 | 1.5624 | 3.1403 | 0.9992 | H to L (69%) |
| IO1a | 969 | 1.2798 | 2.6178 | 0.9977 | H to L (69%) | |
| IO2a | 1032 | 1.2010 | 2.3839 | 0.9958 | H to L (69%) | |
| IO3a | 1014 | 1.2229 | 2.0187 | 0.9904 | H to L (69%) | |
| IO1b | 822 | 1.5075 | 2.2098 | 0.9938 | H to L (69%) | |
| IO2b | 906 | 1.3692 | 1.9186 | 0.9879 | H to L (69%) | |
| IO3b | 909 | 1.3635 | 1.8766 | 0.9867 | H to L (69%) |
Dipole moment values in the gas (μg) as well as the solvent (μs) phase along with the difference between them (μs–μg)
| Molecule |
|
|
|
|---|---|---|---|
| IOR | 0.000616 | 0.000812 | 0.000196 |
| IO1a | 0.000510 | 0.000714 | 0.000204 |
| IO2a | 0.000316 | 0.000332 | 0.000016 |
| IO3a | 0.002500 | 0.003108 | 0.000608 |
| IO1b | 1.812156 | 2.379546 | 0.567390 |
| IO2b | 5.031879 | 6.825028 | 1.793149 |
| IO3b | 3.558277 | 4.845889 | 1.287612 |
Fig. 6MESPs of IOR and “a” series of all the newly formulated molecules.
Fig. 7TDM plots of IOR and “a” series of all the newly designed molecules.
Electron (λe) and hole (λh) reorganization energies values of all the researched molecules
| Molecules |
|
|
|---|---|---|
| IOR | 0.0077052 | 0.005041 |
| IO1a | 0.0060543 | 0.0067175 |
| IO2a | 0.0060808 | 0.0066025 |
| IO3a | 0.0063082 | 0.0065544 |
| IO1b | 0.0090177 | 0.0101874 |
| IO2b | 0.0090450 | 0.0106523 |
| IO3b | 0.0093598 | 0.0117805 |
Computed open-circuit voltage (VOC), normalized VOC (voc), and fill factor of the cited and the newly formulated molecules
| Molecules |
| Normalized | Fill factor |
|---|---|---|---|
| IOR | 1.37 | 53.039 | 0.90776 |
| IO1a | 1.50 | 58.072 | 0.91410 |
| IO2a | 1.65 | 63.879 | 0.92161 |
| IO3a | 1.70 | 65.815 | 0.92220 |
| IO1b | 1.49 | 57.684 | 0.91365 |
| IO2b | 1.50 | 58.072 | 0.91410 |
| IO3b | 1.53 | 59.233 | 0.91544 |
Fig. 8Open-circuit voltage of all the researched molecular donors attained with PC61BM acceptor molecule.