"Turn-on" and pinhole-free ultrathin core-shell Au@SiO2 nanoparticle-based metal-enhanced fluorescent (MEF) chemodosimeter for Hg2+

被引:0
|
作者
Cui, Ying [1 ,2 ]
Fan, Shanji [3 ]
Zhai, Yunran [1 ]
Liu, Yingjie [3 ]
Li, Junhua [2 ]
Hu, Jiawen [1 ]
Wang, Lijia [4 ]
机构
[1] Hunan Univ, Coll Chem & Chem Engn, Adv Catalyt Engn Res Ctr, Hunan Key Lab Two Dimens Mat,Minist Educ, Changsha 410082, Peoples R China
[2] Hengyang Normal Univ, Coll Chem & Mat Sci, Key Lab Funct Met Organ Cpds Hunan Prov, Hengyang 421001, Peoples R China
[3] Univ South China, Affiliated Hosp 1, Hengyang Med Sch, Dept Breast & Thyroid Surg, Hengyang 421000, Peoples R China
[4] Zhejiang Univ, Natl Clin Res Ctr Child Hlth, Natl Childrens Reg Med Ctr, Childrens Hosp,Sch Med, Hangzhou 310052, Zhejiang, Peoples R China
来源
NANOSCALE ADVANCES | 2024年 / 6卷 / 09期
关键词
QUANTUM DOTS; CARBON DOTS; FISH TISSUE; FOOD-CHAIN; MERCURY; IONS; SPECTROMETRY; SPECIATION; PROBE; CHEMOSENSOR;
D O I
10.1039/d3na00746d
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
This study reports a metal-enhanced fluorescence chemodosimeter for highly sensitive detection of Hg2+ ions. Silica-coated Au nanoparticles (Au@SiO2 NPs) with a pinhole-free 4-5 nm shell were synthesized and functionalized with a monolayer of turn-on fluorescent probes. Compared to other organic fluorescent probes suffering from poor biocompatibility and detection limits, this design of a monolayer of turn-on fluorescent probes immobilized on the Au@SiO2 NPs with a pinhole-free 4-5 nm shell avoids fluorescence quenching and allows the fluorescent probe within the field of the inner Au NPs to experience metal-enhanced fluorescence. With this design, the chemodosimeter permits fluorescence emission in the presence of Hg2+ ions, because they trigger the ring-opening reaction of the fluorescent probe immobilized on the Au@SiO2 NPs. Additionally, the fluorescent probe is distanced by the thin SiO2 shell from directly attaching to the metallic Au NPs, which not only avoids fluorescence quenching but allows the fluorescent probe within the long-ranged field of the inner Au NPs to experience metal-enhanced fluorescence. As a result, the detection limit for the chemodosimeter can reach up to 5.0 x 10(-11) M, nearly two orders of magnitude higher than that achieved for the free fluorescent probe. We also demonstrate the acquisition of images of Hg2+ in HTC116 cells and zebrafish using a simple fluorescence confocal imaging technique. The fluorescence response results for HTC116 cells and zebrafish show that the probes can permeate into cells and organisms. Considering the availability of the many organic fluorescent probes that have been designed, the current designed metal-enhanced fluorescence chemodosimeter holds great potential for fluorescence detection of diverse species and fluorescence imaging.
引用
收藏
页码:2319 / 2327
页数:9
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