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Helical Perovskite Nanowires with Strong Circularly Polarized Luminescence Self-Assembled from Red-Emitting CsPbI3 Quantum Dots Following Chiral Ligand Exchange

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

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Abstract

Circularly polarized luminescence (CPL) of chiral perovskite nanocrystals is crucial for applications such as spin-polarized light-emitting diodes and chiral photodetectors. However, the reported luminescence dissymmetry factors are often too low for practical applications; it is also important for CPL wavelengths to cover the red emission range for display applications. Herein, we realized helical perovskite nanowires self-assembled from red-emitting CsPbI3 quantum dots (QDs) with a strong CPL signal around 640 nm, which was enabled by chiral ligand R-/S-binaphthyl phosphoric acid. The formation of CsPbI3 nanowires from perovskite QDs occurred by oriented attachment; QDs remaining in solution attached at the surface of the nanowires, forming helical structures. The films produced from these chiral nanowires demonstrate high dissymmetry factors of 1.1 × 10-2 and 2.3 × 10-2 for absorption and luminescence, respectively, surpassing many previously reported chiral nanomaterials. We employed multilayer nanowire films as chiral filters, generating left- and right-handed CPL. © 2025 American Chemical Society.

Original languageEnglish
Pages (from-to)17774-17784
JournalACS Nano
Volume19
Issue number18
Online published1 May 2025
DOIs
Publication statusPublished - 13 May 2025

Bibliographical note

Publisher Copyright:
© 2025 American Chemical Society.

Funding

We acknowledges the use of in situ PL and AFM equipment of Profs. Sai-Wing Tsang and Hin-Lap Yip from City University of Hong Kong. Financial support was provided by the Research Grant Council of Hong Kong SAR (CityU 11317322).

Research Keywords

  • chirality
  • circularly polarized luminescence
  • ligand exchange
  • metal halide perovskite
  • self-assembly

Publisher's Copyright Statement

  • COPYRIGHT TERMS OF DEPOSITED POSTPRINT FILE: This document is the Accepted Manuscript version of a Published Work that appeared in final form in ACS Nano, copyright © 2025 American Chemical Society after peer review and technical editing by the publisher. To access the final edited and published work see https://doi.org/10.1021/acsnano.5c03149.

RGC Funding Information

  • RGC-funded

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