Anhui Key Laboratory of Functional Coordination Compounds, School of Chemistry & Chemical Engineering, Anqing Normal University, Anqing, P R China.
Dalton Trans. 2012 Mar 7;41(9):2620-5. doi: 10.1039/c2dt11947a. Epub 2012 Jan 6.
A reversible solid optical sensor (SGIR) for Hg(2+) based on silica gel was designed and synthesized. The binding and adsorption abilities of SGIR for metal cations were investigated with fluorophotometry and cold vapor atomic absorption spectrometry, respectively. The SGIR exhibits high selectivity for sensing Hg(2+) over other metal cations in aqueous media because the Hg(2+) ion selectively induces a ring opening of the rhodamine fluorophores, and the SGIR was also found to adsorb 72% of Hg(2+) ion. The determination of Hg(2+) in both tap and lake water samples displays satisfactory results, and the SGIR can also be easily recovered by treatment of a solution of TBA(+)OH(-).
设计并合成了一种基于硅胶的可还原固态光学传感器(SGIR)用于检测 Hg(2+)。分别用荧光光度法和冷原子吸收光谱法研究了 SGIR 对金属阳离子的结合和吸附能力。在水介质中,SGIR 对 Hg(2+)的选择性传感具有很高的选择性,因为 Hg(2+)离子选择性诱导罗丹明荧光团的开环,并且 SGIR 还被发现吸附 72%的 Hg(2+)离子。对自来水和湖水样品中 Hg(2+)的测定结果令人满意,并且 SGIR 还可以通过处理 TBA(+)OH(-)溶液来轻松回收。