Please use this identifier to cite or link to this item: http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/5965
Title: Effect of Capping Ligand Engineering on Transport Properties and Carrier Dynamics in Cubic CsPbI3 Nanocrystal Film
Authors: SARKAR, SOHINI
BANERJEE, SNEHA
SWARNKAR, ABHISHEK
MANDAL, PANKAJ
Dept. of Chemistry
Keywords: Halide Perovskite Nanocrystals
Terahertz Conductivity
Lead Iodide
CSPBBR3
Cesium
Mobilities
Recombination
Diffusion
Cells
2021-JUN-WEEK4
TOC-JUN-2021
2021
Issue Date: May-2021
Publisher: American Chemical Society
Citation: Journal of Physical Chemistry C, 125(19), 10539–10548.
Abstract: Cubic (α) phase CsPbI3 perovskite nanocrystals (NCs) are highly sought-after solar cell materials due to their appropriate bandgap of 1.73 eV. Nevertheless, the NCs are capped by insulating organic ligands. For utilizing these NCs in device fabrication, dot-to-dot electronic transport is essential, which can be achieved by removing the capping ligands by washing with methyl acetate and lead acetate. Time-resolved terahertz spectroscopy has been used to study the charge carrier dynamics and the transport properties of α-CsPbI3 NC film, methyl acetate, and lead acetate treated α-CsPbI3 NC films on a nonconducting substrate to evaluate the effect of ligand removal. Ligand treatment enhances inter-NC coupling, leading to a 5-fold increase in photoconductivity and mobility and a 2-fold increase in diffusion length. However, ligand-treatment of the NC film also introduces new defect states confirmed by the presence of strong excitation-energy-dependent transport properties and a new faster carrier recombination pathway in the ligand-treated films. Overall, the resultant effect of ligand treatment is beneficial as the newly introduced traps are within the valence and conduction bands, not in the bandgap.
URI: http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/5965
https://doi.org/10.1021/acs.jpcc.1c02350
ISSN: 1932-7447
1932-7455
Appears in Collections:JOURNAL ARTICLES

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