Meta-amino substituted naphthalimides exhibit large charge transfer and strong N-H vibrations enabling use as ratiometric fluorescent probe

Fengzhi Wang, Ke Hu, Jinquan Chen, Zhubin Hu, Haitao Sun, Tony D. James, Yufang Xu, Xuhong Qian

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Abstract

Fluorescent probes based on intramolecular charge transfer (ICT) have obvious advantages for accurate quantitative analysis. To obtain high-performance ratiometric probes requires distinct photophysical properties during recognition reaction process, which is closely related to their ICT characteristics. 1,8-Naphthalimide is known as a typical fluorophore with desirable ICT property when functionalized with an electron-donating moiety at the para-position of the naphthalene chromophore. Although the photophysical properties of para-substituted 1,8-naphthalimide have been well studied, its meta-substituted counterpart has not been fully evaluated since the meta-position is conventionally thought to be weakly conjugated. Herein, combined experimental and theoretical studies are performed which consistently indicate that stronger charge transfer (CT) is exhibited by the meta-amino substituted 1,8-naphthalimide (m-NH2) compared to the para-amino substituted one (p-NH2). The ratiometric response of fluorescence with significant changes in wavelength and intensity upon acetylation (m-NAc and p-NAc) can be attributed to the larger ICT and stronger -NH2 vibrations. This observation is further demonstrated by deuterium oxide experiments, viscosity experiments and quantum chemical calculations. The practical application of meta-amino-1,8-naphthalimide ICT-based probes is also confirmed. This research is expected to bring an in-depth understanding of π-conjugated systems with ICT characteristics, and facilitates the design of sensitive ICT fluorescent probes with meta-amino substitution.

Original languageEnglish
Article number110971
JournalChinese Chemical Letters
Volume37
Issue number1
Early online date19 Feb 2025
DOIs
Publication statusPublished - 31 Jan 2026

Funding

This work is financially supported by National Key Research and Development Programs (Nos. 2022YFD1700403 and 2023YFD1700303 ) and National Natural Science Foundation of China (Nos. 12274128 and 12250003 ), Shanghai Rising-Star Program (No. 21QA1402600 ). H.S. acknowledges the ECNU Multifunctional Platform for Innovation (001) and HPC Research Computing Team for providing computational and storage resources and the support of NYU-ECNU Center for Computational Chemistry at NYU Shanghai. TDJ wishes to thank the University of Bath and the Open Research Fund of the School of Chemistry and Chemical Engineering, Henan Normal University (No. 2020ZD01 ) for support.

FundersFunder number
University of Bath
National Key Research and Development Program of China2023YFD1700303, 2022YFD1700403
East China Normal University001
National Natural Science Foundation of China12250003, 12274128
Shanghai Rising-Star Program21QA1402600
Henan Normal University2020ZD01

    Keywords

    • Charge transfer
    • Meta-substituted
    • Naphthalimide
    • Theoretical insights
    • Vibration

    ASJC Scopus subject areas

    • General Chemistry

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