Chiral 2D Organic Inorganic Hybrid Perovskite with Circular Dichroism Tunable Over Wide Wavelength Range. 2020

Jihoon Ahn, and Sunihl Ma, and Ji-Young Kim, and Jihoon Kyhm, and Wooseok Yang, and Jung Ah Lim, and Nicholas A Kotov, and Jooho Moon
Department of Materials Science and Engineering, Yonsei University, Seoul 03722, Republic of Korea.

The effect of chemical-composition modification on the chiroptical property of chiral organic ammonium cation-containing organic inorganic hybrid perovskite (chiral OIHP) is investigated. Varying the mixing ratio of bromide and iodide anions in S- or R-C6H5CH2(CH3)NH3)2PbI4(1-Br4 modifies the band gap of chiral OIHP, leading to a shift of the circular dichroism (CD) signal from 495 to 474 nm. However, it is also found that an abrupt crystalline structure transition occurs, and the CD signal is turned off when iodide-determinant phases are transformed into the bromide-determinant phase. To obtain CD in the wavelength range where the bromide-determinant phase is supposed to exhibit chiroptical activity, that is, <474 nm, S- or R-C12H7CH2(CH3)NH3 with a larger spacer group can be adopted; thus, the CD signal can be further blue-shifted to ∼375 nm. Here, we show that chemical-composition modification of chiral OIHP affects the chiroptical properties of chiral OIHP in two ways: (1) tuning the wavelength of CD by modulating the excitonic band structure and (2) switching the CD on and off by inducing a crystalline-structure change. These properties can be utilized for structural engineering of high-performance chiroptical materials for spin-polarized light-emitting devices and polarization-based optoelectronics.

UI MeSH Term Description Entries

Related Publications

Jihoon Ahn, and Sunihl Ma, and Ji-Young Kim, and Jihoon Kyhm, and Wooseok Yang, and Jung Ah Lim, and Nicholas A Kotov, and Jooho Moon
March 2024, Nature communications,
Jihoon Ahn, and Sunihl Ma, and Ji-Young Kim, and Jihoon Kyhm, and Wooseok Yang, and Jung Ah Lim, and Nicholas A Kotov, and Jooho Moon
September 2021, Angewandte Chemie (International ed. in English),
Jihoon Ahn, and Sunihl Ma, and Ji-Young Kim, and Jihoon Kyhm, and Wooseok Yang, and Jung Ah Lim, and Nicholas A Kotov, and Jooho Moon
March 2016, Nanoscale,
Jihoon Ahn, and Sunihl Ma, and Ji-Young Kim, and Jihoon Kyhm, and Wooseok Yang, and Jung Ah Lim, and Nicholas A Kotov, and Jooho Moon
January 2020, Nature communications,
Jihoon Ahn, and Sunihl Ma, and Ji-Young Kim, and Jihoon Kyhm, and Wooseok Yang, and Jung Ah Lim, and Nicholas A Kotov, and Jooho Moon
November 2022, Dalton transactions (Cambridge, England : 2003),
Jihoon Ahn, and Sunihl Ma, and Ji-Young Kim, and Jihoon Kyhm, and Wooseok Yang, and Jung Ah Lim, and Nicholas A Kotov, and Jooho Moon
May 2018, Advanced materials (Deerfield Beach, Fla.),
Jihoon Ahn, and Sunihl Ma, and Ji-Young Kim, and Jihoon Kyhm, and Wooseok Yang, and Jung Ah Lim, and Nicholas A Kotov, and Jooho Moon
November 2017, Small (Weinheim an der Bergstrasse, Germany),
Jihoon Ahn, and Sunihl Ma, and Ji-Young Kim, and Jihoon Kyhm, and Wooseok Yang, and Jung Ah Lim, and Nicholas A Kotov, and Jooho Moon
June 2020, Physical chemistry chemical physics : PCCP,
Jihoon Ahn, and Sunihl Ma, and Ji-Young Kim, and Jihoon Kyhm, and Wooseok Yang, and Jung Ah Lim, and Nicholas A Kotov, and Jooho Moon
October 2019, Optics express,
Jihoon Ahn, and Sunihl Ma, and Ji-Young Kim, and Jihoon Kyhm, and Wooseok Yang, and Jung Ah Lim, and Nicholas A Kotov, and Jooho Moon
January 2019, Advanced science (Weinheim, Baden-Wurttemberg, Germany),
Copied contents to your clipboard!