罗丹明6G
1-萘酚
环糊精
荧光
化学
2-萘酚
胶体金
共价键
光化学
水溶液
纳米颗粒
罗丹明B
非共价相互作用
组合化学
色谱法
有机化学
分子
氢键
材料科学
纳米技术
催化作用
光催化
物理
量子力学
作者
Xiaokun Li,Dianjun Liu,Zhenxin Wang
标识
DOI:10.1016/j.bios.2010.10.005
摘要
In present work, a rhodamine 6G (Rh 6G)-incorporated β-cyclodextrin functionalized gold nanoparticle (Rh 6G-CD-AuNP) based fluorescent assay has been successfully developed for recognizing/detecting the structural isomers, α-naphthol and β-naphthol, in aqueous solution. The β-cyclodextrin functionalized gold nanoparticles (CD-AuNPs) are achieved by conjugating the thiolated β-cyclodextrin (SH-β-CD) with AuNPs via S-Au covalent bonds. Rhodamine 6G (Rh 6G) is chosen as a fluorescent probe in this approach because it can be strongly absorbed on the surface of AuNP by noncovalent interaction. After binding with β-CD cavity, the naphthols enable to act as electron transfer quenchers of Rh 6G, which lead to significant fluorescence quenching of the dye. Because of different association ability of naphthol isomers with the β-CD cavity, the assay can selectively distinguish α-naphthol and β-naphthol with reasonable sensitivity. Detection of naphthols down to 8 nM with a dynamic range of nearly three orders of magnitude (0.01–8 μM) for α-naphthol and 50 nM with two orders of magnitude (0.1–20 μM) for β-naphthol is demonstrated, respectively. The ability of the method for detecting the content of α-naphthol or β-naphthol in the different naphthol mixtures has also been evaluated.
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