Numerical Simulation of Mof - Based DSSC as New Material using Scaps - ID

Interim Semester 2020 / 2021

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Main Author: Muhammat Aliff Iman Bin Azmi
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Published: 2023
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id my.uniten.dspace-21224
record_format dspace
spelling my.uniten.dspace-212242023-05-04T22:28:15Z Numerical Simulation of Mof - Based DSSC as New Material using Scaps - ID Muhammat Aliff Iman Bin Azmi numerical Simulation Scaps - ID Mof DSSC Interim Semester 2020 / 2021 ABSTRACT This thesis cover the study and research on the efficiency of Dye Sensitized Solar Cells (DSSC). To improve the efficiency of solar cell, previous study and the other researcher done many research on modifying material used in the DSSC parts such as the electrolyte, the photoanode, counter electrolyte and trapping the light using a scattering layer. Metal organic framework structures and functional application in the previous studies done by other researchers showed that it can be a good material to use as absorber layer in DSSC. This thesis shows all process in detail of the simulation from material used, the parameters and finally the result. The study shows the effect of temperature and thickness on MOF based DSSC. The study found that higher temperature on solar cell, will result in decreasing in efficiency after reach its maximum efficiency it optimum temperature. The study also found out that the efficiency also depend on the thickness of absorber layer. The simulation is done using SCAPS-1D software to investigate the effects of temperature and thickness on two type of MOF material used as absorber layer in DSSC. 2023-05-03T16:17:00Z 2023-05-03T16:17:00Z 2020-09 https://irepository.uniten.edu.my/handle/123456789/21224 application/pdf
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
topic numerical Simulation
Scaps - ID
Mof DSSC
spellingShingle numerical Simulation
Scaps - ID
Mof DSSC
Muhammat Aliff Iman Bin Azmi
Numerical Simulation of Mof - Based DSSC as New Material using Scaps - ID
description Interim Semester 2020 / 2021
format
author Muhammat Aliff Iman Bin Azmi
author_facet Muhammat Aliff Iman Bin Azmi
author_sort Muhammat Aliff Iman Bin Azmi
title Numerical Simulation of Mof - Based DSSC as New Material using Scaps - ID
title_short Numerical Simulation of Mof - Based DSSC as New Material using Scaps - ID
title_full Numerical Simulation of Mof - Based DSSC as New Material using Scaps - ID
title_fullStr Numerical Simulation of Mof - Based DSSC as New Material using Scaps - ID
title_full_unstemmed Numerical Simulation of Mof - Based DSSC as New Material using Scaps - ID
title_sort numerical simulation of mof - based dssc as new material using scaps - id
publishDate 2023
_version_ 1806426394141392896
score 13.222552