材料科学
纳米技术
近红外光谱
分子
红外线的
光化学
化学
光学
有机化学
物理
作者
Qinghua Zhu,Jing Nie,Yamei Li,Ni Li,Xiaoni Kong,Honglei Zhou,Jiyong Wu
摘要
, providing superior tissue penetration, high sensitivity, and outstanding spatiotemporal resolution. Strategic design of small-molecule organic NIR-II fluorophores with customizable molecular structures, superior optical properties, and high biocompatibility is critical for leveraging NIR-II imaging in precise cancer diagnosis and therapy. This review highlights molecular engineering strategies such as donor-acceptor optimization, π-system expansion, and aggregation suppression to improve emission wavelength, quantum yield, and photostability. We further evaluate their dual roles in real-time tumor imaging and photodynamic/photothermal therapy, emphasizing structure-performance relationships. Current challenges such as low quantum efficiency (<1%) and aggregation-induced quenching are discussed alongside emerging solutions like nanocarrier encapsulation and AI-driven molecular design. These innovations advance clinical translation by integrating preclinical insights into image-guided precision oncology systems.
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