Cargando…

Light-Induced Wavelength Dependent Self Assembly Process for Targeted Synthesis of Phase Stable 1D Nanobelts and 2D Nanoplatelets of CsPbI(3) Perovskites

[Image: see text] Despite black cubic phase α-CsPbI(3) nanocrystals having an ideal bandgap of 1.73 eV for optoelectronic applications, the phase transition from α-CsPbI(3) to non-perovskite yellow δ-CsPbI(3) phase at room temperature remains a major obstacle for commercial applications. Since γ-CsP...

Descripción completa

Detalles Bibliográficos
Autores principales: Pramanik, Avijit, Sinha, Sudarson Sekhar, Gates, Kaelin, Nie, Jing, Han, Fengxiang X, Ray, Paresh Chandra
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10099116/
https://www.ncbi.nlm.nih.gov/pubmed/37065067
http://dx.doi.org/10.1021/acsomega.3c00477
_version_ 1785024980081180672
author Pramanik, Avijit
Sinha, Sudarson Sekhar
Gates, Kaelin
Nie, Jing
Han, Fengxiang X
Ray, Paresh Chandra
author_facet Pramanik, Avijit
Sinha, Sudarson Sekhar
Gates, Kaelin
Nie, Jing
Han, Fengxiang X
Ray, Paresh Chandra
author_sort Pramanik, Avijit
collection PubMed
description [Image: see text] Despite black cubic phase α-CsPbI(3) nanocrystals having an ideal bandgap of 1.73 eV for optoelectronic applications, the phase transition from α-CsPbI(3) to non-perovskite yellow δ-CsPbI(3) phase at room temperature remains a major obstacle for commercial applications. Since γ-CsPbI(3) is thermodynamically stable with a bandgap of 1.75 eV, which has great potential for photovoltaic applications, herein we report a conceptually new method for the targeted design of phase stable and near unity photoluminescence quantum yield (PLQY) two-dimensional (2D) γ-CsPbI(3) nanoplatelets (NPLs) and one-dimensional (1D) γ-CsPbI(3) nanobelts (NBs) by wavelength dependent light-induced assembly of CsPbI(3) cubic nanocrystals. This article demonstrates for the first time that by varying the excitation wavelengths, one can design air stable desired 2D nanoplatelets or 1D nanobelts selectively. Our experimental finding indicates that 532 nm green light-driven self-assembly produces phase stable and highly luminescent γ-CsPbI(3) NBs from CsPbI(3) nanocrystals. Moreover, we show that a 670 nm red light-driven self-assembly process produces stable and near unity PLQY γ-CsPbI(3) NPLs. Systematic time-dependent microscopy and spectroscopy studies on the morphological evolution indicates that the electromagnetic field of light triggered the desorption of surface ligands from the nanocrystal surface and transformation of crystallographic phase from α to γ. Detached ligands played an important role in determining the morphologies of final structures of NBs and NPLs from nanocrystals via oriented attachment along the [110] direction initially and then the [001] direction. In addition, XRD and fluorescence imaging data indicates that both NBs and NPLs exhibit phase stability for more than 60 days in ambient conditions, whereas the cubic phase α-CsPbI(3) nanocrystals are not stable for even 3 days. The reported light driven synthesis provides a simple and versatile approach to obtain phase pure CsPbI(3) for possible optoelectronic applications.
format Online
Article
Text
id pubmed-10099116
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-100991162023-04-14 Light-Induced Wavelength Dependent Self Assembly Process for Targeted Synthesis of Phase Stable 1D Nanobelts and 2D Nanoplatelets of CsPbI(3) Perovskites Pramanik, Avijit Sinha, Sudarson Sekhar Gates, Kaelin Nie, Jing Han, Fengxiang X Ray, Paresh Chandra ACS Omega [Image: see text] Despite black cubic phase α-CsPbI(3) nanocrystals having an ideal bandgap of 1.73 eV for optoelectronic applications, the phase transition from α-CsPbI(3) to non-perovskite yellow δ-CsPbI(3) phase at room temperature remains a major obstacle for commercial applications. Since γ-CsPbI(3) is thermodynamically stable with a bandgap of 1.75 eV, which has great potential for photovoltaic applications, herein we report a conceptually new method for the targeted design of phase stable and near unity photoluminescence quantum yield (PLQY) two-dimensional (2D) γ-CsPbI(3) nanoplatelets (NPLs) and one-dimensional (1D) γ-CsPbI(3) nanobelts (NBs) by wavelength dependent light-induced assembly of CsPbI(3) cubic nanocrystals. This article demonstrates for the first time that by varying the excitation wavelengths, one can design air stable desired 2D nanoplatelets or 1D nanobelts selectively. Our experimental finding indicates that 532 nm green light-driven self-assembly produces phase stable and highly luminescent γ-CsPbI(3) NBs from CsPbI(3) nanocrystals. Moreover, we show that a 670 nm red light-driven self-assembly process produces stable and near unity PLQY γ-CsPbI(3) NPLs. Systematic time-dependent microscopy and spectroscopy studies on the morphological evolution indicates that the electromagnetic field of light triggered the desorption of surface ligands from the nanocrystal surface and transformation of crystallographic phase from α to γ. Detached ligands played an important role in determining the morphologies of final structures of NBs and NPLs from nanocrystals via oriented attachment along the [110] direction initially and then the [001] direction. In addition, XRD and fluorescence imaging data indicates that both NBs and NPLs exhibit phase stability for more than 60 days in ambient conditions, whereas the cubic phase α-CsPbI(3) nanocrystals are not stable for even 3 days. The reported light driven synthesis provides a simple and versatile approach to obtain phase pure CsPbI(3) for possible optoelectronic applications. American Chemical Society 2023-03-31 /pmc/articles/PMC10099116/ /pubmed/37065067 http://dx.doi.org/10.1021/acsomega.3c00477 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Pramanik, Avijit
Sinha, Sudarson Sekhar
Gates, Kaelin
Nie, Jing
Han, Fengxiang X
Ray, Paresh Chandra
Light-Induced Wavelength Dependent Self Assembly Process for Targeted Synthesis of Phase Stable 1D Nanobelts and 2D Nanoplatelets of CsPbI(3) Perovskites
title Light-Induced Wavelength Dependent Self Assembly Process for Targeted Synthesis of Phase Stable 1D Nanobelts and 2D Nanoplatelets of CsPbI(3) Perovskites
title_full Light-Induced Wavelength Dependent Self Assembly Process for Targeted Synthesis of Phase Stable 1D Nanobelts and 2D Nanoplatelets of CsPbI(3) Perovskites
title_fullStr Light-Induced Wavelength Dependent Self Assembly Process for Targeted Synthesis of Phase Stable 1D Nanobelts and 2D Nanoplatelets of CsPbI(3) Perovskites
title_full_unstemmed Light-Induced Wavelength Dependent Self Assembly Process for Targeted Synthesis of Phase Stable 1D Nanobelts and 2D Nanoplatelets of CsPbI(3) Perovskites
title_short Light-Induced Wavelength Dependent Self Assembly Process for Targeted Synthesis of Phase Stable 1D Nanobelts and 2D Nanoplatelets of CsPbI(3) Perovskites
title_sort light-induced wavelength dependent self assembly process for targeted synthesis of phase stable 1d nanobelts and 2d nanoplatelets of cspbi(3) perovskites
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10099116/
https://www.ncbi.nlm.nih.gov/pubmed/37065067
http://dx.doi.org/10.1021/acsomega.3c00477
work_keys_str_mv AT pramanikavijit lightinducedwavelengthdependentselfassemblyprocessfortargetedsynthesisofphasestable1dnanobeltsand2dnanoplateletsofcspbi3perovskites
AT sinhasudarsonsekhar lightinducedwavelengthdependentselfassemblyprocessfortargetedsynthesisofphasestable1dnanobeltsand2dnanoplateletsofcspbi3perovskites
AT gateskaelin lightinducedwavelengthdependentselfassemblyprocessfortargetedsynthesisofphasestable1dnanobeltsand2dnanoplateletsofcspbi3perovskites
AT niejing lightinducedwavelengthdependentselfassemblyprocessfortargetedsynthesisofphasestable1dnanobeltsand2dnanoplateletsofcspbi3perovskites
AT hanfengxiangx lightinducedwavelengthdependentselfassemblyprocessfortargetedsynthesisofphasestable1dnanobeltsand2dnanoplateletsofcspbi3perovskites
AT raypareshchandra lightinducedwavelengthdependentselfassemblyprocessfortargetedsynthesisofphasestable1dnanobeltsand2dnanoplateletsofcspbi3perovskites