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  4. Planar rotor-enabled quenching-resistant NIR-II fluorophores for high-contrast bioimaging and efficient cancer phototheranostics
 
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Planar rotor-enabled quenching-resistant NIR-II fluorophores for high-contrast bioimaging and efficient cancer phototheranostics

Journal
Materials Horizons
ISSN
2051-6347
2051-6355
Date Issued
2026
Author(s)
Chen, Weilong
Wang, Sa
Rao, Ganipisetti Hanumantha
Lee, Ka-Wai
Guan, Zhiqiang
Chen, Siyu
Li, Yuqing
Zhang, Chuang
Zhong, Yeteng
Zhang, Jinfeng
Wong, Ken-Tsung  
Wan, Yingpeng
Lee, Chun-Sing
DOI
10.1039/d6mh00067c
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/738669
Abstract
Quenching-resistant near-infrared-II (NIR-II) fluorophores with strong light harvesting capabilities and excellent photophysical properties remain a critical challenge in cancer phototheranostics. Herein, we report a novel acceptor–donor–acceptor (A–D–A) fluorophore, BTP-2TCF, constructed by introducing planar, rotatable tricyanofuran (TCF) acceptors into the core of the high-performance dye Y6. This molecular design imparts obvious anti-quenching behavior to BTP-2TCF nanoparticles (NPs), achieving an improved photoluminescence quantum yield of 1.9% and over a ten-fold enhancement in reactive oxygen species generation compared to Y6 NPs. These improvements are likely attributed to the restricted intramolecular motion of the TCF rotor, which suppresses non-radiative energy dissipation. BTP-2TCF NPs also exhibit a high molar absorption coefficient (>82 000 M−1 cm−1) and brightness (635 M−1 cm−1), outperforming conventional anti-quenching dyes. Their bright NIR-II fluorescence enables high-contrast visualization of mouse vasculature. Guided by NIR-II fluorescence imaging, BTP-2TCF NPs demonstrate superior photodynamic and photothermal anticancer efficacy in vivo. This study highlights the TCF planar rotor as a powerful strategy for developing next-generation quenching-resistant fluorophores for biomedical applications.
Publisher
Royal Society of Chemistry (RSC)
Type
journal article

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