Issue 3, 2025

Chiral 0D hybrid lead-bromide perovskites with strong nonlinear chiroptical properties

Abstract

Chiral optical materials enable simultaneous linear and nonlinear optical properties and have emerged as a new class of materials desirable for applications in chiroptical information technology. Herein, we developed two pairs of hybrid lead-bromide perovskites (R-/S-APD)PbBr4 and (1R,2R-/1S,2S-DACH)2PbBr6·2H2O, and systematically investigated their linear and nonlinear chiroptical responses. Second-harmonic generation circular dichroism (SHG-CD) measurements reveal a high anisotropy factor (gSHG-CD) of up to 1.58 for (1S,2S-DACH)2PbBr6·2H2O, which is the highest value among those of the reported chiral perovskites to date. Notably, these perovskites display a high laser damage threshold (LDT) of up to 59.36 GW cm−2. This study demonstrates that the 0D chiral hybrid lead-bromide perovskite system can simultaneously exhibit both high LDT and gSHG-CD, thereby opening a new route for the design of high-performance chiral nonlinear optics.

Graphical abstract: Chiral 0D hybrid lead-bromide perovskites with strong nonlinear chiroptical properties

Supplementary files

Article information

Article type
Research Article
Submitted
15 Aug 2024
Accepted
14 Nov 2024
First published
15 Nov 2024

Mater. Chem. Front., 2025,9, 418-429

Chiral 0D hybrid lead-bromide perovskites with strong nonlinear chiroptical properties

H. Yang, B. Sun, J. Guan, S. Wu, P. Wang, Q. Wang, J. Xu and H. Zhang, Mater. Chem. Front., 2025, 9, 418 DOI: 10.1039/D4QM00627E

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