Huang Pengcheng, Li Sha, Gao Nan, Wu Fangying
College of Chemistry, Nanchang University, Nanchang 330031, China.
Analyst. 2015 Nov 7;140(21):7313-21. doi: 10.1039/c5an01356a.
Heavy metal pollution can exert severe effects on the environment and human health. Simple, selective, and sensitive detection of heavy metal ions, especially two or more, using a single probe, is thereby of great importance. In this study, we report a new and facile strategy for discriminative detection of Hg(2+) and Cd(2+) with high selectivity and sensitivity via pH-modulated surface chemistry of the glutathione-capped gold NCs (GSH-Au NCs). By simply adjusting pH values of the colloidal solution of the NCs, Hg(2+) could specifically turn off the fluorescence under acidic pH, however, Cd(2+) could exclusively turn on the fluorescence under alkaline pH. This enables the NCs to serve as a dual fluorescent sensor for Hg(2+) and Cd(2+). We demonstrate that these two opposing sensing modes are presumably due to different interaction mechanisms: Hg(2+) induces aggregation by dissociating GSH from the Au surface via robust coordination and, Cd(2+) could passivate the Au surface by forming a Cd-GSH complex with a compact structure. Finally, the present strategy is successfully exploited to separately determine Hg(2+) and Cd(2+) in environmental water samples.
重金属污染会对环境和人类健康产生严重影响。因此,使用单一探针简单、选择性且灵敏地检测重金属离子,尤其是两种或更多种重金属离子,具有极其重要的意义。在本研究中,我们报告了一种新的简便策略,通过谷胱甘肽包覆的金纳米簇(GSH-Au NCs)的pH调制表面化学,以高选择性和灵敏度鉴别检测Hg(2+)和Cd(2+)。通过简单调节纳米簇胶体溶液的pH值,Hg(2+)在酸性pH下可特异性地使荧光猝灭,然而,Cd(2+)在碱性pH下可专一性地使荧光增强。这使得纳米簇能够作为Hg(2+)和Cd(2+)的双荧光传感器。我们证明这两种相反的传感模式可能归因于不同的相互作用机制:Hg(2+)通过强大的配位作用使GSH从金表面解离从而诱导聚集,而Cd(2+)可通过形成结构紧密的Cd-GSH络合物使金表面钝化。最后,本策略成功用于分别测定环境水样中的Hg(2+)和Cd(2+)。