科研速览 · Science Skim继续刷下去 · Keep skimming →
◆ Analytical Chemistry2026-02-02· Chemistry

Dynamic Crystalline Nanofibers for Analyte-Specific Fluorescence Sensing

Lishan Sun, Tianyan Zhang, Zongjun Yu, Chenglong Liao, Hongwei Ji, Yanjun Gong, Wenjing Song, Ling Zang, Yanke Che, Jincai Zhao

原始摘要(英文原文)· Original abstract
Dynamic molecular crystals with inherent conformational flexibility could offer a promising platform for fluorescence sensing by exhibiting analyte-specific conformational and fluorescence responses. Herein, we materialize this notion through a donor–acceptor (D–A) molecule featuring a D-D-A-D-D backbone, with a thiadiazolopyridine acceptor flanked by carbazole donors. The molecule self-assembles into crystalline nanofibers endowed with a dynamic conformational twisting capability, which arises from the synergistic effect of the unique A group’s electrostatic repulsion and the spatial freedom provided by the alkyl chains. This dynamic nature is validated by a rapid and reversible emission toggle between yellow and red upon cycling exposure to and evaporation of solvents like n -hexane. Crucially, the dynamic nanofibers also allow analyte binding to drive specific conformational changes, thereby perturbing intermolecular interactions and yielding distinct fluorescence responses. These responses, including variations in kinetics and intensity, enable the multiplexed discrimination of amines with high selectivity and sensitivity against humidity and background volatile organic compounds. The dynamic nanofibers function robustly in complex environments such as hair spray and car exhaust, and exhibit high sensitivity toward amine-type drugs, with detection limits as low as 1 ng for methamphetamine and fentanyl. This work underscores the potential of dynamic molecular crystals to deliver substantially expanded signal diversity for advanced sensing applications.
读原文 · Read the paper ↗

AI 追问PRO

登录后使用 AI 追问

讨论区

登录后参与讨论

相关论文 · Related

Dynamic Crystalline Nanofibers for Analyte-Specific Fluorescence Sensing — 科研速览 Science Skim