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Title: | Safranin O-functionalized cuboid mesoporous silica material for fluorescent sensing and adsorption of permanganate |
Authors: | Chatterjee, Sobhan Rai, Dhirendra Kumar |
Keywords: | Adsorption;Biology;Chlorine compounds;Fluorescence;Functional materials;Mesoporous materials;Silica;Silicon;Toxic materials;Adsorption ability;Design and application;Excitation wavelength;Fluorescent sensing;Functional activities;Mesoporous silica materials;Organic-inorganic hybrid materials;Selective coordination;organic-inorganic materials;copper;fluorescent dye;ion;manganese derivative;mercury;oxide;permanganic acid;phenazine derivative;safranine T;silicon dioxide;adsorption;animal;chemistry;isolation and purification;porosity;structure activity relation;zebra fish;Adsorption;Animals;Copper;Fluorescent Dyes;Ions;Manganese Compounds;Mercury;Oxides;Phenazines;Porosity;Silicon Dioxide;Structure-Activity Relationship;Zebrafish |
Issue Date: | 2020 |
Publisher: | Royal Society of Chemistry |
Citation: | Chatterjee, S., Qin, J., Li, X., Liang, F., Rai, D. K., & Yang, Y. -. (2020). Safranin O-functionalized cuboid mesoporous silica material for fluorescent sensing and adsorption of permanganate. Journal of Materials Chemistry B, 8(11), 2238-2249. doi:10.1039/d0tb00036a |
Abstract: | Incorporation of dual functions, i.e., sensing and adsorption, into one single organic-inorganic hybrid material for the detection and removal of toxic permanganate (MnO4-) ions is of great importance, representing a challenging and new task in the design and application of new functional materials. However, most of the reported materials display only one function as either sensing probes or adsorbents. In this work, a fluorescent cuboid mesoporous silica-based hybrid material (SiO2@SFNO) is first prepared by the covalent coupling of a new safranin O-based fluorophore (2,8-dimethyl-5-phenyl-3,7-bis(3-(3-(triethoxysilyl)propyl)ureido)phenazin-5-ium chloride) (SFNO) and newly-made cuboid mesoporous silica, which showed selective dual-functional activities towards MnO4- and green emission at 575 nm with a long-range excitation wavelength that is suitable for bio-imaging application. The design of this SiO2@SFNO material is based on the position of-NHCONH-groups, which are mainly responsible for the strong and selective coordination with MnO4-. SiO2@SFNO is responsive to MnO4- at parts per billion (67 ppb) level; it also displays high adsorption ability (292 mg g-1) to MnO4- in aqueous solutions. The fluorescence responses of MnO4-in vivo (limnodrilus claparedianus and zebrafish) demonstrate the possibility of further application in biology. Interestingly, this SiO2@SFNO material is also capable of monitoring trace amounts of Hg2+ and Cu2+ in living organisms, holding great potential in bio-related applications. This journal is © The Royal Society of Chemistry. |
URI: | https://doi.org/10.1039/d0tb00036a https://dspace.iiti.ac.in/handle/123456789/7509 |
ISSN: | 2050-750X |
Type of Material: | Journal Article |
Appears in Collections: | Department of Metallurgical Engineering and Materials Sciences |
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