Research Article

Significant Improvement in Light Harvesting Efficiency of Naphthalene Imide Derivative Dyes via Linker Engineering for p-type Dye-Sensitized Solar Cells

Volume: 39 Number: 3 September 1, 2026
EN

Significant Improvement in Light Harvesting Efficiency of Naphthalene Imide Derivative Dyes via Linker Engineering for p-type Dye-Sensitized Solar Cells

Abstract

A set of carbazole–naphthalene imide dyes with various linkers (phenyl, thiophene, furan) was designed and theoretically examined. The electronic structures, absorbance characteristics, and free-energy parameters, including hole injection (ΔGinject), dye regeneration (ΔGreg), and charge recombination (ΔGCR), were calculated. The furan-linked dye-3 displayed the most equilibrated profile of the investigated dyes, integrating a red-shifted absorption spectrum with advantageous ΔGreg and ΔGCR values. These findings emphasize linker engineering as a viable design approach to enhance orbital alignment, increase light-harvesting efficiency, and mitigate recombination in p-DSSCs, while also indicating the necessity for subsequent experimental verification. All computations were implemented utilizing Density Functional Theory (DFT) and Time-Dependent DFT (TD-DFT) with Gaussian 09 software. Geometries were optimized employing the conductor-like polarizable continuum model (C-PCM) with chlorobenzene as the solvent at the B3LYP/6-311G(d,p) theoretical level. Molecular orbitals, absorbance spectra, ionization potentials, electron affinities, reorganization energies, and thermodynamic driving forces (ΔGinject, ΔGreg, ΔGCR) were obtained from these computations to elucidate structure–property correlations related to p-DSSCs functionality.

Keywords

References

  1. [1] O’Regan, B., and Grätzel, M., “A low-cost, high-efficiency solar cell based on dye-sensitized colloidal TiO2 films”, Nature, 353(6346):737–740, (1991). DOI: https://doi.org/10.1038/353737a0
  2. [2] Akdogan, N., Ortatepe, B., Atli, A., Disli, A., Erdogdu, Y., and Yildiz, A., “A joint theoretical and experimental study on a Tetrazole-Anchored BODIPY-Based dye at the surface of TiO2 for dye-sensitized solar cell applications”, Physica Status Solidi A, 221(3), (2023). DOI: https://doi.org/10.1002/pssa.202300513
  3. [3] Akdogan, N., Alp, M., Atilgan, A., Disli, A., Erdogdu, Y., and Yildiz, A., “An AZO dye with nitril anchoring to dye-sensitized solar cell performance: A theoretical and experimental investigation”, Materials Letters, 351:135075, (2023). DOI: https://doi.org/10.1016/j.matlet.2023.135075
  4. [4] Erdogdu, M., Atilgan, A., Erdogdu, Y., and Yildiz, A., “Flavonoid from Hedera helix fruits: A promising new natural sensitizer for DSSCs”, Journal of Photochemistry and Photobiology A: Chemistry, 448:115288, (2023). DOI: https://doi.org/10.1016/j.jphotochem.2023.115288
  5. [5] Erdogdu, M., Atilgan, A., Erdogdu, Y., and Yildiz, A., “Natural dyes extracted from Ligustrum vulgare, Juniperus sabina, and Papaver rhoeas for novel DSSC applications”, Materials Letters, 358:135811, (2023). DOI: https://doi.org/10.1016/j.matlet.2023.135811
  6. [6] Mathew, S., Yella, A., Gao, P., Humphry-Baker, R., Curchod, B.F.E., Ashari-Astani, N., Tavernelli, I., Rothlisberger, U., Nazeeruddin, M.K., and Grätzel, M., “Dye-sensitized solar cells with 13% efficiency achieved through the molecular engineering of porphyrin sensitizers”, Nature Chemistry, 6(3):242–247, (2014). DOI: https://doi.org/10.1038/nchem.1861
  7. [7] Sahiner, F., Ali, A.K., Denizaltı, S., Kandemir, Z., and Erten-Ela, S., “Naphthalene imides as novel p-type sensitizers for NiO-based p-type dye-sensitized solar cells”, New Journal of Chemistry, 44(36):15526–15537, (2020). DOI: https://doi.org/10.1039/d0nj03266b
  8. [8] Carella, A., Centore, R., Borbone, F., Toscanesi, M., Trifuoggi, M., Bella, F., Gerbaldi, C., Galliano, S., Schiavo, E., Massaro, A., Muñoz-García, A.B., and Pavone, M., “Tuning optical and electronic properties in novel carbazole photosensitizers for p-type dye-sensitized solar cells”, Electrochimica Acta, 292:805–816, (2018). DOI: https://doi.org/10.1016/j.electacta.2018.09.204

Details

Primary Language

English

Subjects

Atomic and Molecular Physics

Journal Section

Research Article

Early Pub Date

August 21, 2026

Publication Date

September 1, 2026

Submission Date

February 19, 2026

Acceptance Date

July 9, 2026

Published in Issue

Year 2026 Volume: 39 Number: 3

APA
Yurdakul, E. B., Yıldız, A., Erten Ela, S., & Erdoğdu, Y. (2026). Significant Improvement in Light Harvesting Efficiency of Naphthalene Imide Derivative Dyes via Linker Engineering for p-type Dye-Sensitized Solar Cells. Gazi University Journal of Science, 39(3), 1705-1717. https://doi.org/10.35378/gujs.1886026
AMA
1.Yurdakul EB, Yıldız A, Erten Ela S, Erdoğdu Y. Significant Improvement in Light Harvesting Efficiency of Naphthalene Imide Derivative Dyes via Linker Engineering for p-type Dye-Sensitized Solar Cells. Gazi University Journal of Science. 2026;39(3):1705-1717. doi:10.35378/gujs.1886026
Chicago
Yurdakul, Emre Burak, Abdullah Yıldız, Sule Erten Ela, and Yusuf Erdoğdu. 2026. “Significant Improvement in Light Harvesting Efficiency of Naphthalene Imide Derivative Dyes via Linker Engineering for P-Type Dye-Sensitized Solar Cells”. Gazi University Journal of Science 39 (3): 1705-17. https://doi.org/10.35378/gujs.1886026.
EndNote
Yurdakul EB, Yıldız A, Erten Ela S, Erdoğdu Y (September 1, 2026) Significant Improvement in Light Harvesting Efficiency of Naphthalene Imide Derivative Dyes via Linker Engineering for p-type Dye-Sensitized Solar Cells. Gazi University Journal of Science 39 3 1705–1717.
IEEE
[1]E. B. Yurdakul, A. Yıldız, S. Erten Ela, and Y. Erdoğdu, “Significant Improvement in Light Harvesting Efficiency of Naphthalene Imide Derivative Dyes via Linker Engineering for p-type Dye-Sensitized Solar Cells”, Gazi University Journal of Science, vol. 39, no. 3, pp. 1705–1717, Sept. 2026, doi: 10.35378/gujs.1886026.
ISNAD
Yurdakul, Emre Burak - Yıldız, Abdullah - Erten Ela, Sule - Erdoğdu, Yusuf. “Significant Improvement in Light Harvesting Efficiency of Naphthalene Imide Derivative Dyes via Linker Engineering for P-Type Dye-Sensitized Solar Cells”. Gazi University Journal of Science 39/3 (September 1, 2026): 1705-1717. https://doi.org/10.35378/gujs.1886026.
JAMA
1.Yurdakul EB, Yıldız A, Erten Ela S, Erdoğdu Y. Significant Improvement in Light Harvesting Efficiency of Naphthalene Imide Derivative Dyes via Linker Engineering for p-type Dye-Sensitized Solar Cells. Gazi University Journal of Science. 2026;39:1705–1717.
MLA
Yurdakul, Emre Burak, et al. “Significant Improvement in Light Harvesting Efficiency of Naphthalene Imide Derivative Dyes via Linker Engineering for P-Type Dye-Sensitized Solar Cells”. Gazi University Journal of Science, vol. 39, no. 3, Sept. 2026, pp. 1705-17, doi:10.35378/gujs.1886026.
Vancouver
1.Emre Burak Yurdakul, Abdullah Yıldız, Sule Erten Ela, Yusuf Erdoğdu. Significant Improvement in Light Harvesting Efficiency of Naphthalene Imide Derivative Dyes via Linker Engineering for p-type Dye-Sensitized Solar Cells. Gazi University Journal of Science. 2026 Sep. 1;39(3):1705-17. doi:10.35378/gujs.1886026