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

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–x)Br4x modifies the ba...

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Veröffentlicht in:Journal of the American Chemical Society 2020-03, Vol.142 (9), p.4206-4212
Hauptverfasser: Ahn, Jihoon, Ma, Sunihl, Kim, Ji-Young, Kyhm, Jihoon, Yang, Wooseok, Lim, Jung Ah, Kotov, Nicholas A, Moon, Jooho
Format: Artikel
Sprache:eng
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Zusammenfassung: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–x)Br4x 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,
ISSN:0002-7863
1520-5126
DOI:10.1021/jacs.9b11453