CHARACTERISTICS OF PEROVSKITE SOLAR CELLS RELATED TO THE PRESENCE OF CRYSTAL DEFECTS
Perovskite solar cells are third-generation solar cells that are fabricated using perovskite crystals as the active light-absorbing layer. The efficiency and performance of perovskite solar cells are dependent by the characteristics of its constituent layers. The formation of defects in high dens...
Saved in:
Main Author: | |
---|---|
Format: | Final Project |
Language: | Indonesia |
Online Access: | https://digilib.itb.ac.id/gdl/view/77897 |
Tags: |
Add Tag
No Tags, Be the first to tag this record!
|
Institution: | Institut Teknologi Bandung |
Language: | Indonesia |
id |
id-itb.:77897 |
---|---|
spelling |
id-itb.:778972023-09-15T09:10:56ZCHARACTERISTICS OF PEROVSKITE SOLAR CELLS RELATED TO THE PRESENCE OF CRYSTAL DEFECTS Fadli Alifvian, Mohammad Indonesia Final Project Cells Characterization, Defects density, Defects passivation, Nonradiation recombination, TFA, Perovskite Solar Cells. INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/77897 Perovskite solar cells are third-generation solar cells that are fabricated using perovskite crystals as the active light-absorbing layer. The efficiency and performance of perovskite solar cells are dependent by the characteristics of its constituent layers. The formation of defects in high density on the surface of the perovskite layer is one of the factors that can reduce cell efficiency. Defect passivation method is one of the methods that can be done to reduce the density of surface defects on the perovskite layer. In this research, the defect passivation method is carried out by adding a defect passivation agent, trifluoroacetic acid (TFA), to the methyl ammonium lead iodide (MAPbI3) perovskite layer. This TFA was added into the MAPbI3 precursor solution. The addition of TFA to the MAPbI3 perovskite layer can reduce the number of surface defects that are formed at the grain boundary, which are characterized by an increase in the ???????????? from 0.78 V to 0.86 V, changes in the free charge kinetics process such as a decrease in the charge transfer resistance parameter from 196,10 ? to 65,89 ? and slowing down the ion migration characteristic time from 1,55 s to 11,83 s under light illumination conditions, as well as increasing the electron lifetime from 6,338 ?s to 12,642 ?s at the ???????????? voltage point of 0,61 V. With the reduction in the number of surface defects, the efficiency of the fabricated MAPbI3 perovskite solar cell can increase from 6,011 % to 8,54%. text |
institution |
Institut Teknologi Bandung |
building |
Institut Teknologi Bandung Library |
continent |
Asia |
country |
Indonesia Indonesia |
content_provider |
Institut Teknologi Bandung |
collection |
Digital ITB |
language |
Indonesia |
description |
Perovskite solar cells are third-generation solar cells that are fabricated using
perovskite crystals as the active light-absorbing layer. The efficiency and
performance of perovskite solar cells are dependent by the characteristics of its
constituent layers. The formation of defects in high density on the surface of the
perovskite layer is one of the factors that can reduce cell efficiency. Defect
passivation method is one of the methods that can be done to reduce the density of
surface defects on the perovskite layer. In this research, the defect passivation
method is carried out by adding a defect passivation agent, trifluoroacetic acid
(TFA), to the methyl ammonium lead iodide (MAPbI3) perovskite layer. This TFA
was added into the MAPbI3 precursor solution. The addition of TFA to the MAPbI3
perovskite layer can reduce the number of surface defects that are formed at the
grain boundary, which are characterized by an increase in the ???????????? from 0.78 V to
0.86 V, changes in the free charge kinetics process such as a decrease in the charge
transfer resistance parameter from 196,10 ? to 65,89 ? and slowing down the ion
migration characteristic time from 1,55 s to 11,83 s under light illumination
conditions, as well as increasing the electron lifetime from 6,338 ?s to 12,642 ?s
at the ???????????? voltage point of 0,61 V. With the reduction in the number of surface
defects, the efficiency of the fabricated MAPbI3 perovskite solar cell can increase
from 6,011 % to 8,54%.
|
format |
Final Project |
author |
Fadli Alifvian, Mohammad |
spellingShingle |
Fadli Alifvian, Mohammad CHARACTERISTICS OF PEROVSKITE SOLAR CELLS RELATED TO THE PRESENCE OF CRYSTAL DEFECTS |
author_facet |
Fadli Alifvian, Mohammad |
author_sort |
Fadli Alifvian, Mohammad |
title |
CHARACTERISTICS OF PEROVSKITE SOLAR CELLS RELATED TO THE PRESENCE OF CRYSTAL DEFECTS |
title_short |
CHARACTERISTICS OF PEROVSKITE SOLAR CELLS RELATED TO THE PRESENCE OF CRYSTAL DEFECTS |
title_full |
CHARACTERISTICS OF PEROVSKITE SOLAR CELLS RELATED TO THE PRESENCE OF CRYSTAL DEFECTS |
title_fullStr |
CHARACTERISTICS OF PEROVSKITE SOLAR CELLS RELATED TO THE PRESENCE OF CRYSTAL DEFECTS |
title_full_unstemmed |
CHARACTERISTICS OF PEROVSKITE SOLAR CELLS RELATED TO THE PRESENCE OF CRYSTAL DEFECTS |
title_sort |
characteristics of perovskite solar cells related to the presence of crystal defects |
url |
https://digilib.itb.ac.id/gdl/view/77897 |
_version_ |
1822995548422012928 |