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Organically Functionalized Mesoporous SBA-15 Type Material Bearing Fluorescent Sites for Selective Detection of HgII from Aqueous Medium

机译:带有荧光位点的有机官能化介孔SBA-15型材料,用于从水性介质中选择性检测HgII

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Hg(II) contamination in water resources is one of the major health issues in keeping the purity standard of the municipal water supply. Herein, we report a new mesoporous sensor probe material SBA-ABZ-PEA having a 2D-hexagonally ordered mesoporous framework bearing covalently bonded fluorescent sites, and this has been synthesized through a two-step post-synthesis grafting route. A pure silica mesoporous SBA-15 material has been functionalized with (3-chloropropyl)triethoxysilane (ClPTES) to obtain chloro-functionalized SBA-15, which was further reacted with 4-aminobenzaldehyde followed by treatment with 2-(2-pyridyl)-ethylamine resulting in functionalized 2D-hexagonal mesoporous sensor probe SBA-ABZ-PEA. Small angle PXRD, N2 adsorption/desorption, HRTEM, TGA, and FT-IR studies have been carried out to characterize these materials. Our experimental results suggested successful grafting of the organic moiety on the SBA-15 surface along with preservation of mesoporosity throughout the grafting process. Photoluminescence measurements were carried out in the aqueous suspension of SBA-ABZ-PEA in the presence of different metal cations, like NaI, MgII, AlIII, KI, CaII, MnII, CoII, CuII, ZnII, CdII, PbII, and HgII. This result revealed that, among the various metal-ions, the emission intensity of the mesoporous sensing probe material SBA-ABZ-PEA has been dramatically quenched in the presence of the HgII ion. To check the sensitivity of the sensor probe, the fluorescence emission was also studied in the presence of different concentrations of HgII ions. A perfect linear plot between the concentrations of HgII ions in the aqueous medium with their corresponding fluorescence intensities with a detection limit of 1.2 × 10–6 M has been observed.
机译:水资源中的Hg(II)污染是保持市政供水纯净标准的主要健康问题之一。在此,我们报告了一种新型的中孔传感器探针材料SBA-ABZ-PEA,其具有带有共价键合荧光位点的2D-六边形有序中孔骨架,并且这是通过两步合成后的接枝途径合成的。已使用(3-氯丙基)三乙氧基硅烷(ClPTES)对纯二氧化硅介孔SBA-15材料进行了官能化处理,从而获得了氯官能化的SBA-15,将其与4-氨基苯甲醛进一步反应,然后用2-(2-吡啶基)-乙胺生成功能化的2D六方介孔传感器探针SBA-ABZ-PEA。小角度PXRD,N2吸附/解吸,HRTEM,TGA和FT-IR研究已经进行了表征。我们的实验结果表明,成功地将SBA-15表面上的有机部分接枝,并在整个接枝过程中保持了介孔性。在SBA-ABZ-PEA的水性悬浮液中,在存在不同金属阳离子(如NaI,MgII,AlIII,KI,CaII,MnII,CoII,CuII,ZnII,CdII,PbII和HgII)的情况下,进行了光致发光测量。该结果表明,在各种金属离子中,在存在HgII离子的情况下,中孔感测探针材料SBA-ABZ-PEA的发射强度已被显着淬灭。为了检查传感器探针的灵敏度,还在不同浓度的HgII离子存在下研究了荧光发射。已经观察到水介质中HgII离子浓度与相应的荧光强度之间的完美线性图,检出限为1.2×10-6M。

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