A Dual‐Color Two‐Photon‐Active Cavitand for Guest‐Responsive Sensing of Benzene and Pyridine Vapors

J Jia‐Qi Wang (Beijing National Laboratory for Molecular Sciences CAS Key Laboratory of Molecular Recognition and Function Institute of Chemistry Chinese Academy of Sciences Beijing China) Y Yu‐Jie Long (Beijing National Laboratory for Molecular Sciences CAS Key Laboratory of Molecular Recognition and Function Institute of Chemistry Chinese Academy of Sciences Beijing China) X Xiang Wang K Kui‐Zhu Song (University of Chinese Academy of Sciences Beijing China) Y Ying Han H Hai‐Yu Hu (State Key Laboratory of Bioactive Substances and Function of Natural Medicine Chinese Academy of Medical Sciences, Peking Union Medical College Beijing China) C Chuan‐Feng Chen (Beijing National Laboratory for Molecular Sciences CAS Key Laboratory of Molecular Recognition and Function Institute of Chemistry Chinese Academy of Sciences Beijing China)

Abstract

ABSTRACT Integrating precise molecular recognition with nonlinear optical functionality represents an attractive yet rarely realized strategy for supramolecular sensing with the optical readout. In this work, a two‐photon‐active luminescent cavitand, tris(quinoxaline)‐functionalized acridine cavitand ( TQAC ), for the guest‐responsive aromatic vapor detection was reported. TQAC was constructed through a macrocycle‐to‐cavitand conversion by incorporating electron‐deficient quinoxaline panels into an electron‐rich acridine‐based macrocyclic scaffold, giving rise to an intramolecular donor–σ–acceptor framework and pronounced charge‐transfer luminescence. Depending on the crystallization conditions, TQAC forms two solid‐state polymorphs with distinct conformations and packing modes, affording porous TQAC α and interlocked TQAC β, which emit yellowish‐green and orange fluorescence, respectively. Notably, both polymorphs exhibit two‐photon‐excited emissions, making TQAC the first solid‐state cavitand system showing dual‐color two‐photon‐absorption property. Moreover, the guest‐accessible TQAC α phase displays rapid and visually distinguishable fluorescence responses toward benzene and pyridine vapors, with detection limits of 7.5 and 3.3 mg L −1 , respectively. This work establishes two‐photon‐active cavitands as a promising platform for supramolecular vapor sensing.

Article Details

Volume / Issue Vol. 1, Issue 1
Published July 30, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (7)

J

Jia‐Qi Wang

Beijing National Laboratory for Molecular Sciences CAS Key Laboratory of Molecular Recognition and Function Institute of Chemistry Chinese Academy of Sciences Beijing China

Y

Yu‐Jie Long

Beijing National Laboratory for Molecular Sciences CAS Key Laboratory of Molecular Recognition and Function Institute of Chemistry Chinese Academy of Sciences Beijing China

X

Xiang Wang

K

Kui‐Zhu Song

University of Chinese Academy of Sciences Beijing China

Y

Ying Han

H

Hai‐Yu Hu

State Key Laboratory of Bioactive Substances and Function of Natural Medicine Chinese Academy of Medical Sciences, Peking Union Medical College Beijing China

C

Chuan‐Feng Chen

Beijing National Laboratory for Molecular Sciences CAS Key Laboratory of Molecular Recognition and Function Institute of Chemistry Chinese Academy of Sciences Beijing China