Enhancing power conversion efficiency of dye-sensitised solar cell (DSSC) by optimising photoelectrode thickness layer

Mohamed Sharif, Noor Fadzilah and Moh Nazar, Nazatul Shiema and Thiwa, Wathinee Sukcharean and Tengku Mohamad, Tengku Norliza and Shafie, Suhaidi and Shaban, Suraya (2023) Enhancing power conversion efficiency of dye-sensitised solar cell (DSSC) by optimising photoelectrode thickness layer. In: International Conference on X-Rays and Related Techniques in Research and Inductry (ICXRI 2023), 23 - 24 Agust 2023, Dorsett Grand Subang Hotel, Subang Jaya, Selangor. (Submitted)

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Abstract

The photoelectrode element in DSSC plays a vital role as a substrate to hold dye and transport the electron to the conductive base in DSSC. A coventional photoelectrode consists of nanoparticle metal oxide semiconductor layered on the conductive side af dye to photo transparent electrode. Photovoltaic (PV) parameters such as open-circuit voltage (Voc), short-circuit current density (Jsc), maximum power point (Pmax), fill-factor (FF) and the power conversion efficiency (PCE) of the solar cell are determined through this experiment. In this project, the thickness of (TiO₂) and Zinc Oxide (ZnO) are fabricated to 5 µm, 10 µm, 15 µm and 30 µm by doctor blading method to allow an efficient electron transport from N719 dye to photoelectrode. It was found that at 15 µm, the PCE achieved by TiO₂ is highest at 1.303 % with Jsc of 5.842 mA/cm² which indicate about 57 % enhancement compared to TiO₂ at 5 µm which generate PCE at 0.83 % and Jsc of 3.798 mA/cm². Besides, at the thickness of 15 µm, the efficiency achieved by ZnO is highest at 1.296 % with Jsc of 6.215 mA/cm² which indicate about 75 % enhancement compared to ZnO at 5 µm which generate PCE at 0.741 % and Jsc of 3.505 mA/cm². Lastly, the performance of TiO₂ as photoelectrode is more efficient compared to ZnO as the PCE achieved by TiO₂ at 5 µm, 10 µm, 15 µm and 30 µm are higher compared to PCE achieved by ZnO.

Item Type: Conference or Workshop Item (Paper)
Uncontrolled Keywords: TiO₂ photoelectrode, thickness optimization, PCE, doctor-blading
Subjects: T Technology > T Technology (General)
T Technology > TK Electrical engineering. Electronics Nuclear engineering
Divisions: Faculty of Engineering
Depositing User: Mr Shahrim Daud
Date Deposited: 08 Mar 2024 07:56
Last Modified: 08 Mar 2024 07:56
URI: http://ir.upnm.edu.my/id/eprint/393

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