化学
谷胱甘肽
费斯特共振能量转移
荧光
检出限
罗丹明
罗丹明B
组合化学
生物标志物
纳米技术
生物物理学
能量转移
生物传感器
生物相容性材料
机制(生物学)
聚集诱导发射
作者
Zeyu Zhu,Xingyu Zhan,Junyang Zhang,Chen He,Jimin Wu,Lijia Liu,Zhongyan Chen,Jing-yuan Ge
标识
DOI:10.1021/acs.inorgchem.6c00150
摘要
Glutathione (GSH), a crucial biological thiol, is a key biomarker whose abnormal levels are implicated in various diseases. The sensitive, quantitative, and on-site detection of GSH is thus urgently required in biomedical and food-safety fields. Herein, we present a rationally designed dual-emission metal-organic framework (MOF), RhB@Zn-MOF, constructed via a one-pot synthesis by encapsulating rhodamine B (RhB) within a novel Zn-MOF. The RhB@Zn-MOF functions as a high-performance ratiometric sensor for GSH through a synergistic mechanism combining resonance energy transfer and absorbance-caused enhancement. Upon GSH binding, the yellow emission of RhB at 590 nm is progressively quenched, while the blue emission of the Zn-MOF host at 490 nm is significantly enhanced. This distinct ratiometric response, as opposed to a simple turn-on signal, provides markedly improved quantification and a substantially lower detection limit (0.689 μM) compared to the pristine Zn-MOF (24.85 μM). Leveraging the dual-emission feature of RhB@Zn-MOF, we further developed a paper-based sensor for on-site detection, which was integrated with a smartphone-based portable device for real-time analysis of practical samples. This work demonstrates that the deliberate design of Zn-MOF and its functional integration with RhB provides a high-performance platform for ratiometric fluorescence sensing, expanding its applications in practical, on-the-go detection.
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