Huang Xinan, Shahzad Sohail Anjum, Li Yongxin, Zhang Yunyi, Sang Lijia, Zhou Huipeng, Jiang Hong, Kam-Wing Lo Kenneth, Yu Cong
State Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, PR China.
State Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, PR China; Department of Chemistry, COMSATS Institute of Information Technology, Abbottabad 22060, Pakistan.
Anal Chim Acta. 2017 Oct 2;988:74-80. doi: 10.1016/j.aca.2017.07.056. Epub 2017 Jul 29.
A novel and efficient approach has been established for the synthesis of silver nanoclusters capped silica nanoparticles (SiO@AgNCs). These nanoclusters (AgNCs) capped silica nanoparticles were utilized as a novel ratiometric photoluminescence (PL) nanosensor for extremely sensitive and selective detection of I and S ions. The AgNCs were prepared in situ on the silica nanoparticles through polyethyleneimine (PEI) template approach. While dual PL emissions of AgNCs (at 500 nm) and luminescent silica nanoparticles (at 602 nm) formed the basis for the ratiometric sensing. The PL emission of AgNCs was strongly quenched by I (or S), while that of luminescent silica nanoparticles was hardly affected. The PL emission intensity ratio of AgNCs and the luminescent silica nanoparticles was defined as I/I. A good linear relationship between the I/I value and the concentration of I (or S) was observed, and the limit of detection (LOD) was estimated to be 57 nM for I and 62 nM for S. In addition, the fluorescence images of the SiO@AgNCs nanosensor changed from white to orange upon exposure to different concentrations of I (or S) (0-250 μM), which could be clearly distinguished by the naked eye. The SiO@AgNCs nanosensor exhibited good selectivity against other analytes, and I or S ions could be separately detected via the introduction of proper masking agents. Furthermore, the detection of I and S in real water samples was also demonstrated.
已建立了一种新颖且高效的方法来合成包覆银纳米团簇的二氧化硅纳米颗粒(SiO@AgNCs)。这些包覆银纳米团簇(AgNCs)的二氧化硅纳米颗粒被用作一种新型的比率光致发光(PL)纳米传感器,用于极其灵敏和选择性地检测碘离子和硫离子。通过聚乙烯亚胺(PEI)模板法在二氧化硅纳米颗粒上原位制备AgNCs。而AgNCs(在500 nm处)和发光二氧化硅纳米颗粒(在602 nm处)的双PL发射构成了比率传感的基础。AgNCs的PL发射被碘离子(或硫离子)强烈猝灭,而发光二氧化硅纳米颗粒的PL发射几乎不受影响。将AgNCs与发光二氧化硅纳米颗粒的PL发射强度比定义为I/I。观察到I/I值与碘离子(或硫离子)浓度之间具有良好的线性关系,碘离子的检测限(LOD)估计为57 nM,硫离子的检测限为62 nM。此外,SiO@AgNCs纳米传感器在暴露于不同浓度的碘离子(或硫离子)(0 - 250 μM)时,其荧光图像从白色变为橙色,肉眼可清晰辨别。SiO@AgNCs纳米传感器对其他分析物表现出良好的选择性,通过引入适当的掩蔽剂可分别检测碘离子或硫离子。此外,还展示了对实际水样中碘离子和硫离子的检测。