This site uses cookies. By continuing to use this site you agree to our use of cookies. To find out more, see our Privacy and Cookies policy.
Brought to you by:
Paper The following article is Open access

Parameters affecting morphologies and efficiencies of mesoporous perovskite solars cells

, , and

Published under licence by IOP Publishing Ltd
, , Citation M M Abdoul-latif et al 2017 IOP Conf. Ser.: Mater. Sci. Eng. 220 012023 DOI 10.1088/1757-899X/220/1/012023

1757-899X/220/1/012023

Abstract

The mesoporous perovskite morphologies and optical and electronic properties are influenced by many parameters with which the device performance could be affected. Firstly, the working temperature can be mentioned. Secondly the substrate temperature which combined with spin coated speed could permit to load perovskite inside the mesoporous independent to working temperature. And other factor as the methyl ammonium iodide (CH3NH3I) solution concentration could be temperature dependent on the lead iodide, means the reaction is most probable done when the concentration increase with the increasing temperature, whereas the reaction between lead iodide and methyl ammonium can be decrease with lead iodide thickness. It is most probable that the solution concentration also has a significant effect on the morphology of the perovskite that is confined in the pores of the mesoporous TiO2. It is most probable also the spin coating speed has added at this decreasing, meaning the large size of crystal decreased the transformation lead iodide to Perovskite. Andhere it will try to explain thickness of capping layer can improve the short-circuit photocurrent (Jsc) but this enhancement decrease with high working temperature.

Export citation and abstract BibTeX RIS

Content from this work may be used under the terms of the Creative Commons Attribution 3.0 licence. Any further distribution of this work must maintain attribution to the author(s) and the title of the work, journal citation and DOI.

Please wait… references are loading.
10.1088/1757-899X/220/1/012023