Enhanced Circularly Polarised Luminescence via Intramolecular Excimers in Chiral Bis‐Naphthalene‐1,8:4,5‐Tetracarboxydiimide Derivatives

When a fluorescent molecule bearing a planar polycyclic aromatic hydrocarbon chromophore is placed in a chiral environment, it is expected to exhibit chiroptical properties such as circular dichroism and circularly polarised luminescence (CPL). Previously, we comparatively studied the fluorescence properties of the chiral bis‐1,8‐naphthalimide derivatives D ‐LyMebNI and L ‐LyMebNI in various solvents and successfully observed CPL originating from intramolecular excimer formation. This study aimed to develop compounds that form intramolecular excimers and exhibit higher CPL brightness ( B CPL ). To this end, we synthesised new chiral bis(1,8:4,5‐naphthalene tetracarboxy)imide derivatives, D ‐LyMebNDI and L‐ LyMebNDI, and investigated their photophysical properties. These molecules exhibited intramolecular excimer fluorescence in polar organic solvents. Mirror‐image circular dichroism and CPL spectra were obtained. In acetonitrile, D ‐ and L ‐LyMebNDI exhibited relatively large luminescence dissymmetry factors (| g lum |) of 2.2 × 10 −3 and 2.8 × 10 −3 , respectively. The B CPL of LyMebNDI was 12 M −1 cm −1 , representing a five‐fold increase relative to LyMebNI (2.5 M −1 cm −1 ). These findings provide insights into the development of practical CPL emitters and the modulation of CPL performance.

Authors

Institutions

Publication Details

Journal
ChemPhotoChem
Published
2026-08-28
DOI
https://doi.org/10.1002/cptc.70225
Primary Topic
Synthesis and Properties of Aromatic Compounds
Type
article
Field-Weighted Citation Impact
0.00

Funders

Controls
|||
ALL TIME
JAN
FEB
MAR
APR
MAY
JUN
JUL
AUG
SEP
article

Enhanced Circularly Polarised Luminescence via Intramolecular Excimers in Chiral Bis‐Naphthalene‐1,8:4,5‐Tetracarboxydiimide Derivatives

Eiji Nakata, Hiroshi Takashima, Yoshitane Imai, Shoko Yamazaki et al.
ChemPhotoChem
Synthesis and Properties of Aromatic Compounds
article

Enhanced Circularly Polarised Luminescence via Intramolecular Excimers in Chiral Bis‐Naphthalene‐1,8:4,5‐Tetracarboxydiimide Derivatives

Eiji Nakata, Hiroshi Takashima, Yoshitane Imai, Shoko Yamazaki, Mizuki Maruyama, Mami Naoe, Honoka Akiyama
article en

Abstract

When a fluorescent molecule bearing a planar polycyclic aromatic hydrocarbon chromophore is placed in a chiral environment, it is expected to exhibit chiroptical properties such as circular dichroism and circularly polarised luminescence (CPL). Previously, we comparatively studied the fluorescence properties of the chiral bis‐1,8‐naphthalimide derivatives D ‐LyMebNI and L ‐LyMebNI in various solvents and successfully observed CPL originating from intramolecular excimer formation. This study aimed to develop compounds that form intramolecular excimers and exhibit higher CPL brightness ( B CPL ). To this end, we synthesised new chiral bis(1,8:4,5‐naphthalene tetracarboxy)imide derivatives, D ‐LyMebNDI and L‐ LyMebNDI, and investigated their photophysical properties. These molecules exhibited intramolecular excimer fluorescence in polar organic solvents. Mirror‐image circular dichroism and CPL spectra were obtained. In acetonitrile, D ‐ and L ‐LyMebNDI exhibited relatively large luminescence dissymmetry factors (| g lum |) of 2.2 × 10 −3 and 2.8 × 10 −3 , respectively. The B CPL of LyMebNDI was 12 M −1 cm −1 , representing a five‐fold increase relative to LyMebNI (2.5 M −1 cm −1 ). These findings provide insights into the development of practical CPL emitters and the modulation of CPL performance.

ChemPhotoChemVol. 10(9)
Nara University of Education (JP), Kyoto University (JP), Kindai University (JP), Nara Women's University (JP)
Kato Foundation for Promotion of Science, Amano Institute of Technology, Fujikura Foundation
Openalex Percentile: Top 19%
Synthesis and Properties of Aromatic Compounds
AI Navigator

Ask Laika to Summarize, Analyze, and Connect papers live on the map.

Summarize Papers & Methodologies

Extract key findings, datasets, and comparative methods across publications.

Benchmark Rankings & Visual Analytics

Rank top research institutions, authors, funders, topics, and journals by Field-Weighted Citation Impact (FWCI) and paper volume with instant charts.

Connect Distant Disciplines

Bridge topological clusters on the map to find hidden collaborative intersections.