Janus‐Type Photophysics of Rotational Isomers in a Diphenylanthracene Dimer

B Byeongjoo Kang (Department of Chemistry Yonsei University Seoul Republic of Korea) D Daniel Yim (Department of Chemistry) J Jaewook Kim (Department of Chemistry) H Hyeonwoo Choi K Kyeong Mo Lim (Department of Chemistry and Green-Nano Material Research Center) J Juwon Oh (Department of Chemistry and Green-Nano Material Research Center) N Naitik A. Panjwani H Hyungjun Kim (Korea Advanced Institute of Science and Technology (KAIST) , , ,) W Woojae Kim (Department of Chemistry)

Abstract

Abstract Organic molecular dimers serve as valuable model systems for manipulating and exploring interchromophore interactions. However, the structural flexibility introduced by linker or chromophore rotation gives rise to conformational isomers with distinct atomic arrangements, complicating the interpretation of photophysical processes. In this study, we investigate 9,9′,10,10′‐tetraphenyl‐2,2′‐bianthracene ( TPBA ) to elucidate the distinct electronic characteristics of its two primary rotational isomers: syn ‐ and anti ‐TPBA . To address the “Janus‐type” photophysical behavior of these isomers, we employed a comprehensive suite of static and time‐resolved spectroscopic techniques, including excitation‐wavelength‐dependent time‐resolved photoluminescence, transient absorption, and time‐resolved electron paramagnetic resonance, complemented by theoretical calculations. syn ‐ and anti ‐TPBA exhibit markedly different emissive properties and charge‐transfer characteristics, reflecting their unique exciton coupling behaviors. Additionally, they showcase distinct triplet formation rates and exhibit environment‐dependent triplet formation mechanisms. This in‐depth study of the Janus‐like electronic properties of TPBA underscores the critical role of conformational isomerism in organic molecular dimers. Neglecting these structural variations can obscure the true photophysical landscape and lead to misinterpretations of mechanistic processes, highlighting the necessity of considering conformational heterogeneity in molecular design and photophysical studies.

Article Details

Volume / Issue Vol. 64, Issue 36
Published September 01, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (9)

B

Byeongjoo Kang

Department of Chemistry Yonsei University Seoul Republic of Korea

D

Daniel Yim

Department of Chemistry

J

Jaewook Kim

Department of Chemistry

H

Hyeonwoo Choi

K

Kyeong Mo Lim

Department of Chemistry and Green-Nano Material Research Center

J

Juwon Oh

Department of Chemistry and Green-Nano Material Research Center

N

Naitik A. Panjwani

H

Hyungjun Kim

Korea Advanced Institute of Science and Technology (KAIST) , , ,

W

Woojae Kim

Department of Chemistry