Effect of preparation rotation speed on structural properties of CH3NH3PB1-xSnxCl3 using spin coating methods

Perovskite-based hybrid organic-inorganic solar cells that use the methylammonium lead tri-iodide (CH3NH3PbI3) have demonstrated ever-increasing energy conversion efficiency and low processing costs, comparable to that of high-efficiency silicon-based solar cells. However, it is suffuring from insta...

Full description

Saved in:
Bibliographic Details
Main Authors: Imad Kemerchou, Abdelkader Hima
Format: Article
Language:English
Published: University of El Oued 2024-08-01
Series:International Journal of Energetica
Subjects:
Online Access:https://www.ijeca.info/index.php/IJECA/article/view/250
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1850244923579695104
author Imad Kemerchou
Abdelkader Hima
author_facet Imad Kemerchou
Abdelkader Hima
author_sort Imad Kemerchou
collection DOAJ
description Perovskite-based hybrid organic-inorganic solar cells that use the methylammonium lead tri-iodide (CH3NH3PbI3) have demonstrated ever-increasing energy conversion efficiency and low processing costs, comparable to that of high-efficiency silicon-based solar cells. However, it is suffuring from instability caused by material degradation. Recently, enhancing stability and hence decreasing the degradation process of CH3NH3PbI3based solar cells is one of the main topics of research in photovoltaic field. The poor stability of these cells prevents their commercialization despite their huge potential that exceeds conventional solar cells. The energy efficiency and economic viability of Perovskite cells depend primarily on the rate of degradation caused by light, temperature, moisture, and oxygen. This paper presents a review of different degradation sources of CH3NH3PbI3-based Perovskite solar cells (PSCs). In this work, a deposition of a CH3NH3PB1-xSnxCl3 Perovskite layer using spin coating method has been investigated. Therefore, different rotation speed have been used in layer spin coating phase to find out their effects on structural parameters characteristics of the resulting CH3NH3PB1-xSnxCl3 organic/inorganic Perovskite material.
format Article
id doaj-art-a7b7a9df0c094e68837bddf0bde9a403
institution OA Journals
issn 2543-3717
language English
publishDate 2024-08-01
publisher University of El Oued
record_format Article
series International Journal of Energetica
spelling doaj-art-a7b7a9df0c094e68837bddf0bde9a4032025-08-20T01:59:35ZengUniversity of El OuedInternational Journal of Energetica2543-37172024-08-01915358151Effect of preparation rotation speed on structural properties of CH3NH3PB1-xSnxCl3 using spin coating methodsImad Kemerchou0Abdelkader Hima1Department of Mechanical engineering, Faculty of Applied Sciences, University of OuarglaFaculty of Technology, University of El OuedPerovskite-based hybrid organic-inorganic solar cells that use the methylammonium lead tri-iodide (CH3NH3PbI3) have demonstrated ever-increasing energy conversion efficiency and low processing costs, comparable to that of high-efficiency silicon-based solar cells. However, it is suffuring from instability caused by material degradation. Recently, enhancing stability and hence decreasing the degradation process of CH3NH3PbI3based solar cells is one of the main topics of research in photovoltaic field. The poor stability of these cells prevents their commercialization despite their huge potential that exceeds conventional solar cells. The energy efficiency and economic viability of Perovskite cells depend primarily on the rate of degradation caused by light, temperature, moisture, and oxygen. This paper presents a review of different degradation sources of CH3NH3PbI3-based Perovskite solar cells (PSCs). In this work, a deposition of a CH3NH3PB1-xSnxCl3 Perovskite layer using spin coating method has been investigated. Therefore, different rotation speed have been used in layer spin coating phase to find out their effects on structural parameters characteristics of the resulting CH3NH3PB1-xSnxCl3 organic/inorganic Perovskite material.https://www.ijeca.info/index.php/IJECA/article/view/250structural properties, perovskite films, spin coating, ch3nh3pb1-xsnxcl3.
spellingShingle Imad Kemerchou
Abdelkader Hima
Effect of preparation rotation speed on structural properties of CH3NH3PB1-xSnxCl3 using spin coating methods
International Journal of Energetica
structural properties, perovskite films, spin coating, ch3nh3pb1-xsnxcl3.
title Effect of preparation rotation speed on structural properties of CH3NH3PB1-xSnxCl3 using spin coating methods
title_full Effect of preparation rotation speed on structural properties of CH3NH3PB1-xSnxCl3 using spin coating methods
title_fullStr Effect of preparation rotation speed on structural properties of CH3NH3PB1-xSnxCl3 using spin coating methods
title_full_unstemmed Effect of preparation rotation speed on structural properties of CH3NH3PB1-xSnxCl3 using spin coating methods
title_short Effect of preparation rotation speed on structural properties of CH3NH3PB1-xSnxCl3 using spin coating methods
title_sort effect of preparation rotation speed on structural properties of ch3nh3pb1 xsnxcl3 using spin coating methods
topic structural properties, perovskite films, spin coating, ch3nh3pb1-xsnxcl3.
url https://www.ijeca.info/index.php/IJECA/article/view/250
work_keys_str_mv AT imadkemerchou effectofpreparationrotationspeedonstructuralpropertiesofch3nh3pb1xsnxcl3usingspincoatingmethods
AT abdelkaderhima effectofpreparationrotationspeedonstructuralpropertiesofch3nh3pb1xsnxcl3usingspincoatingmethods