Modular Assembly of B(III)‐Coordinated Fluorophores with Quantitatively Predictable Photoinduced Electron Transfer for Chemosensing and Bioimaging
Abstract
Abstract Photoinduced electron transfer (PeT), a foundational mechanism for constructing stimuli‐responsive fluorescent probes, faces persistent challenges, including the lack of generalizable quantitative models, limited systematic case studies, signal interference, and synthetic complexity. Herein, we propose a boron‐centric PeT molecular engineering strategy that harnesses the unique tetrahedral coordination geometry of B(III) centers. This approach leverages the programmable nature of boron coordination chemistry to precisely tailor dye electronic energy levels and photophysical properties. Using dipyrromethane as a core scaffold and modulating boronic acid coordination with diverse nucleophiles (such as alcohols, phenols, and carboxylic acids), we developed a modular, multicomponent one‐pot synthesis platform for efficient assembly of B‐PeT dyes. Extending this strategy to pyrrolyldipyrrin and dipyrrolyldipyrrin scaffolds achieved the synthesis of near‐infrared (NIR) B‐PeT dyes. A library of 75 B(III)‐derivatives was synthesized and characterized to enable systematic elucidation and predictive modeling of structure‐PeT activity relationships, providing mechanistic insights to guide mitigation of PeT signal interference. The engineered B‐PeT probes exhibit superior performance in photoactivated imaging and lysosomal pH sensing, highlighting their translational potential. Our work establishes boron coordination chemistry as a modular toolkit for rational PeT probe design, offering scalable molecular platforms for next‐generation sensors with enhanced functionality and synthetic efficiency.
Article Details
Authors (10)
Heng Li
Luying Guo
Key Laboratory of Functional Molecular Solids, Ministry of Education, Anhui Province Key Laboratory of Biomedical Materials and Chemical Measurement, School of Chemistry and Materials Science
Wei Miao
Department of Nuclear Medicine First Affiliated Hospital of Anhui Medical University Hefei Anhui 230022 China
Zhaoyun Wang
Key Laboratory of Functional Molecular Solids, Ministry of Education, Anhui Province Key Laboratory of Biomedical Materials and Chemical Measurement, School of Chemistry and Materials Science
Zhengxin Kang
Laboratory of Functionalized Molecular Solids of Ministry of Education, Anhui Province Key Laboratory of Biomedical Materials and Chemical Measurement College of Chemistry and Materials Science Anhui Normal University Wuhu Anhui 241002 China
Shaozhen Wang
Institute of Synthesis and Application of Medical Materials, Department of Pharmacy
Xing Guo
Changjiang Yu
Lijuan Jiao
Key Laboratory of Functional Molecular Solids, Ministry of Education, Anhui Province Key Laboratory of Biomedical Materials and Chemical Measurement, School of Chemistry and Materials Science
Erhong Hao
Key Laboratory of Functional Molecular Solids, Ministry of Education, Anhui Province Key Laboratory of Biomedical Materials and Chemical Measurement, School of Chemistry and Materials Science