Journal Article PUBDB-2026-01003

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Strain‐Engineered Lattice‐Driven Chirality in CsPbBr$_3$ Nanorods

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2026
Wiley-VCH Weinheim

Small 22(27), e14507 () [10.1002/smll.202514507]
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Abstract: This work demonstrates intrinsic lattice-driven chirality in CsPbBr$_3$ nanorods, arising from strain-induced octahedral distortion, and fundamentally distinct from chiral-ligand-induced or molecule-driven chirality reported in most halide perovskites. The highly quantum-confined nanorods exhibit exceptionally large lattice strain nearly an order of magnitude higher than in previously reported systems which acts as the primary driving force for breaking local inversion symmetry. This strain-mediated symmetry breaking gives rise to strong circular dichroism (CD), natural circular dichroism (NCD), and robust polarization-dependent photoluminescence (PL), all persisting up to room temperature. Piezoresponse force microscopy confirms local ferroelectricity, magnetization measurement showed diamagnetic to superparamagnetic transition while magneto-optical measurements reveal nonlinear Zeeman response and zero-field magnetic signatures linked to the asymmetric chiral potential. Collectively, these results establish strain as a powerful route for inducing chirality, ferroelectricity, and magneto-optical coupling in achiral inorganic lattices, opening new pathways for chiral optoelectronics and spin-selective devices.

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Contributing Institute(s):
  1. DOOR-User (DOOR ; HAS-User)
  2. PETRA-D (FS-PETRA-D)
Research Program(s):
  1. 632 - Materials – Quantum, Complex and Functional Materials (POF4-632) (POF4-632)
  2. 6G3 - PETRA III (DESY) (POF4-6G3) (POF4-6G3)
  3. INDIA-DESY - INDIA-DESY Collaboration (2020_Join2-INDIA-DESY) (2020_Join2-INDIA-DESY)
Experiment(s):
  1. PETRA Beamline P23 (PETRA III)

Appears in the scientific report 2026
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Medline ; Clarivate Analytics Master Journal List ; Current Contents - Physical, Chemical and Earth Sciences ; DEAL Wiley ; Essential Science Indicators ; IF >= 10 ; JCR ; SCOPUS ; Science Citation Index Expanded ; Web of Science Core Collection
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 Record created 2026-03-18, last modified 2026-05-19


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