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Facile synthesis of reduced graphene oxide-gold nanohybrid for potential use in industrial waste-water treatment

IR@CGCRI: CSIR-Central Glass and Ceramic Research Institute, Kolkata

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Title Facile synthesis of reduced graphene oxide-gold nanohybrid for potential use in industrial waste-water treatment
 
Creator Kar, Prasenjit
Sardar, Samim
Liu, Bo
Sreemany, Monjoy
Lemmens, Peter
Ghosh, Srabanti
Pal, Samir Kumar
 
Subject Environment and Pollution
 
Description Here, we report a facile approach, by the photochemical reduction technique, for in situ synthesis of Au-reduced graphene oxide (Au-RGO) nanohybrids, which demonstrate excellent adsorption capacities and recyclability for a broad range of dyes. High-resolution transmission electron microscopy (HRTEM), X-ray diffraction (XRD), and X-ray photoelectron spectroscopy (XPS) data confirm the successful synthesis of Au-RGO nanohybrids. The effect of several experimental parameters (temperature and pH) variation can effectively control the dye adsorption capability. Furthermore, kinetic adsorption data reveal that the adsorption process follows a pseudo second-order model. The negative value of Gibbs free energy (Delta G(0)) confirms spontaneity while the positive enthalpy (Delta H-0) indicates the endothermic nature of the adsorption process. Picosecond resolved fluorescence technique unravels the excited state dynamical processes of dye molecules adsorbed on the Au-RGO surface. Time resolved fluorescence quenching of Rh123 after adsorption on Au-RGO nanohybrids indicates efficient energy transfer from Rh123 to Au nanoparticles. A prototype device has been fabricated using Au-RGO nanohybrids on a syringe filter (pore size: 0.220 mu m) and the experimental data indicate efficient removal of dyes from waste water with high recyclability. The application of this nanohybrid may lead to the development of an efficient reusable adsorbent in portable water purification. GRAPHICS]
 
Publisher Taylor & Francis
 
Date 2016-01
 
Type Article
PeerReviewed
 
Format application/pdf
 
Identifier http://cgcri.csircentral.net/3648/1/prasenjit.pdf
Kar, Prasenjit and Sardar, Samim and Liu, Bo and Sreemany, Monjoy and Lemmens, Peter and Ghosh, Srabanti and Pal, Samir Kumar (2016) Facile synthesis of reduced graphene oxide-gold nanohybrid for potential use in industrial waste-water treatment. Science and Technology of Advanced Materials, 17 (1). pp. 375-386. ISSN 1468-6996
 
Relation http://cgcri.csircentral.net/3648/