Record Details

Hole Transport Layer Optimization for Mixed Halide Perovskite based Solar Cells to achieve Better Photovoltaic Performance

NOPR - NISCAIR Online Periodicals Repository

View Archive Info
 
 
Field Value
 
Title Hole Transport Layer Optimization for Mixed Halide Perovskite based Solar Cells to achieve Better Photovoltaic Performance
 
Creator Dhakla, Shweta
Deendyal, Parvesh K
Singh, Harpreet
Mishra, Monu
Kumar, Sarvesh
Kashyap, Manish K
 
Subject Methylammonium lead iodide
Perovskite absorber
Solar cells
Hole transport layers
 
Description 851-853
Methylammonium lead iodide (MAPbI3) has been emerged out as an efficient perovskite absorber material in solar cell
applications and extensively studied on both experimental and theoretical fronts. However, these MAPbI3-based perovskite
solar cells (PSCs) undergo degradation due to thermal instability of MAPbI3, which in-turn deteriorates the performance of PSC
for a long-run. In this work, we deal with the computational analysis of mixed-halide MAPb(I1-xClx)3 based PSCs by changing
hole transport layers (HTLs) so that higher efficiency can be aimed. It has been observed that not only the appropriate band
alignment of HTL with perovskite, but the mobility of HTL also play a pivotal role in achieving the better photovoltaic (PV)
performance. Furthermore, it is noteworthy that Cu2O exhibits a better PV performance in contrast to other HTLs considered in
our study. Thus, the present simulation work paves a path for the experimentalists to design similar PSCs by cutting-down the
cost of experimental trials.
 
Date 2023-09-21T05:33:28Z
2023-09-21T05:33:28Z
2023-09
 
Type Article
 
Identifier 0975-0959 (Online); 0301-1208 (Print)
http://nopr.niscpr.res.in/handle/123456789/62558
https://doi.org/10.56042/ijpap.v61i10.2573
 
Language en
 
Publisher NIScPR-CSIR,India
 
Source IJPAP Vol.61(10) [October 2023]