4.7 Article

Organic-inorganic hybrid fluorescent sensor thin films of rhodamine B embedded Ag-SBA15 for selective recognition of Hg (II) ions in water

Journal

CHINESE CHEMICAL LETTERS
Volume 28, Issue 7, Pages 1399-1405

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.cclet.2017.01.018

Keywords

Mercury sensor; Metal enhanced fluorescence; Rhodamine B; Ag nanoparticles; SBA15; Fluorescence quenching

Funding

  1. Department of Science and Technology, Govt of India through Fast Track Young Scientist Scheme [SR/FT/CS-103/2009]

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Nowadays, the rapid and effective detection of low doses of heavy metal pollutants in contaminated water is a timely challenge in environmental pollution research. In this study, a rapid and highly sensitive assay for the detection of Hg2+ based on quenching of metal-enhanced fluorescence of rhodamine B (RB) has been fabricated. RB and silver nanoparticle were incorporated into the mesoporous siliceous framework spin cast on a quartz glass through post-synthetic incorporation method. The morphology and crystallinity of mesoporous structure and Ag nanoparticle were characterized by transmission electron microscopy and X-ray diffraction analyses. Photoluminescence assays on the hybrid thin film of RB-Ag-SBA15 showed a high enhancement when compared to the intensity of silver free SBA15-RB in the wavelength of 575 nm. The fluorescence of RB-Ag-SBA15 thin film decreased gradually with the increase in the concentration of Hg2+ and the detection limits were 10.54 nmol/L. Furthermore, the fluorescence intensity increased linearly with the concentration of Hg2+ in the range from 1.0 x 10(-8) mol/L to 10 x 10(-8) mol/L, with a response time of a few seconds. In addition, this system offers a high selectivity over interfering cations such as Cd(2+)and Pb2+. Overall, we have developed an optical assay having a well ordered mesoporous SBA15 containing Ag-RBfor selective detection of Hg2+ in aqueous solution. The scheme combines the advantages of specific binding interactions between Hg2+ and RB molecule and optical emission properties of RB. The method is suitable for a single-shot and irreversible analytical assay in a quartz glass/microtiter plate. (C) 2017 Chinese Chemical Society and Institute of Materia Medica, Chinese Academy of Medical Sciences. Published by Elsevier B.V. All rights reserved.

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