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Designed complexes combining brazilein and brazilin with betanidin for dye-sensitized solar cell application: DFT and TD-DFT study.
Malashi, Nyanda Madili; Chande Jande, Yusufu Abeid; Wazzan, Nuha; Safi, Zaki; Al-Qurashi, Ohoud S; Costa, Rene.
Affiliation
  • Malashi NM; School of Materials, Energy, Water, and Environmental Sciences, The Nelson Mandela African Institution of Science and Technology (NM-AIST), P. O. Box 447, Arusha, Tanzania; Department of Mechanical and Industrial Engineering, Mbeya University of Science and Technology (MUST), P.O. Box 131, Mbeya, Ta
  • Chande Jande YA; School of Materials, Energy, Water, and Environmental Sciences, The Nelson Mandela African Institution of Science and Technology (NM-AIST), P. O. Box 447, Arusha, Tanzania; Water Infrastructure and Sustainable Energy Futures Centre, Nelson Mandela African Institution of Science and Technology, Arush
  • Wazzan N; Department of Chemistry, Faculty of Science, King Abdulaziz University, Jeddah, Saudi Arabia. Electronic address: nwazzan@kau.edu.sa.
  • Safi Z; Chemistry Department, Faculty of Science, Al Azhar University - Gaza, P.O Box 1277, Gaza, Palestine. Electronic address: zaki.safi@gmail.com.
  • Al-Qurashi OS; Chemistry Department, Faculty of Science, University of Jeddah, Saudi Arabia. Electronic address: oaqurshi@uj.edu.sa.
  • Costa R; Department of Physical and Environmental Sciences, Faculty of Science, Technology and Environmental Studies, The Open University of Tanzania (OUT), P. O Box 23409, Dar es Salaam, Tanzania. Electronic address: costarene9@gmail.com.
J Mol Graph Model ; 127: 108691, 2024 03.
Article in En | MEDLINE | ID: mdl-38086144
ABSTRACT
Dye-sensitized solar cells (DSSCs) are promising third-generation photovoltaic cell technology owing to their easy fabrication, flexibility and better performance under diffuse light conditions. Natural pigment sensitizers are abundantly available and environmentally friendliness. However, narrow absorption spectra of natural pigments result in low efficiencies of the DSSCs. Therefore, combining two or more pigments with complementary absorption spectra is considered an appropriate method to broaden the absorption band and boost efficiency. This study reports three complex molecules brazilin-betanidin-oxane (Braz-Bd-oxane), brazilin-betanidin-ether (Braz-Bd-ether) and brazilein-betanidin-ether (Braze-Bd-ether), obtained from the etherification and bi-etherification reactions of brazilin dye and brazilein dye with betanidin dye. The equilibrium geometrical structure properties, frontier molecular orbital, electrostatic surface potential, reorganization energy, chemical reactivities, and non-linear optical properties of the studied dyes were investigated using density functional theory (DFT)/B3LYP methods, with 6-31+G(d,p) basis sets and LANL2DZ for light atom and heavy atoms respectively. The optical-electronic properties were calculated using TD-DFT/B3LYP/6-31+G(d,p) for isolated dye and TD-DFT/CAM-B3LYP/6-31G(d,p)/LANL2DZ for dyes@(TiO2)9H4. The results reveal that spectra for Braz-Bd-oxane and Braze-Bd-ether complexes red-shifted compared to the individually selected dyes. The simulated absorption spectra of the adsorbed dyes on (TiO2)9H4 are red-shifted compared to the free dye. Moreover, Braz-Bd-oxane and Braz-Bd-ether exhibit better charge transfer and photovoltaic properties than the selected natural dyes forming these complexes. Based on the dyes' optoelectronic properties and photovoltaic properties, the designed molecules Braz-Bd-oxane and Braze-Bd-ether are considered better candidates to be used as photosensitizers in dye solar cells.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Solar Energy / Benzopyrans / Coloring Agents / Indenes Country/Region as subject: America do sul / Brasil Language: En Journal: J Mol Graph Model Year: 2024 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Solar Energy / Benzopyrans / Coloring Agents / Indenes Country/Region as subject: America do sul / Brasil Language: En Journal: J Mol Graph Model Year: 2024 Document type: Article