4.8 Review

Chiral Perovskites for Next-Generation Photonics: From Chirality Transfer to Chiroptical Activity

Journal

ADVANCED MATERIALS
Volume 33, Issue 47, Pages -

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adma.202005760

Keywords

chiral perovskites; chirality transfer mechanism; circular dichroism; circularly polarized luminescence

Funding

  1. National Research Foundation (NRF) of Korea - Ministry of Science and ICT [2012R1A3A2026417]

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Organic-inorganic hybrid halide perovskites (OIHPs) are widely used in various applications due to their exceptional optoelectrical properties and structural flexibility. Despite intriguing chiral properties, the transfer mechanism from chiral molecules to achiral semiconductors and the origin of chiroptical activity are still not extensively studied. This comprehensive review discusses recent advances in chiroptical activities of chiral OIHPs and provides insight into the underlying chirality transfer mechanism.
Organic-inorganic hybrid halide perovskites (OIHPs) are commonly used as prototypical materials for various applications, including photovoltaics, photodetectors, and light-emitting devices. Since the chiroptical properties of OIHPs are deciphered in 2017, chiral OIHPs have been rediscovered as new hybrid systems comprising chiral organic molecules and achiral inorganic octahedral layers. Owing to their exceptional optoelectrical properties and structural flexibility, chiral OIHPs have received a considerable amount of attention in chiral photonics, chiroptoelectronics, spintronics, and ferroelectrics. Despite their intriguing chiral properties, the transfer mechanism from chiral molecules to achiral semiconductors has not been extensively investigated. Furthermore, an in-depth understanding of the origin of chiroptical activity is still elusive. In this review article, recent advances in the chiroptical activities of chiral OIHPs and polarization-based devices adopting chiral OIHPs are comprehensively discussed, and insight into the underlying chirality transfer mechanism based on theoretical considerations is provided. This comprehensive survey, with an emphasis on the chirality transfer mechanism, will help readers understand the chiroptical properties of OIHPs, which are crucial for the development of spin-based photonic and optoelectronic devices. Additionally, promising strategies to exploit the potential of chiral OIHPs are also discussed.

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