4.7 Article

Synthesis of graphenized Au/ZnO plasmonic nanocomposites for simultaneous sunlight mediated photo-catalysis and anti-microbial activity

Journal

JOURNAL OF HAZARDOUS MATERIALS
Volume 347, Issue -, Pages 378-389

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jhazmat.2017.12.034

Keywords

Visible light responsiveness; Bi-functionalized nanocomposite; Hydrothermal synthesis; Sunlight-driven dye degradation and; antibacterial activity

Funding

  1. Department of Science and Technology (DST) INSPIRE, Government of India, Science and Engineering Research Board (SERB) [NPDF/2016/003866]
  2. University of Potential Excellence -II program [PAC-JNU-DST-PURSE-462]

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Sunlight mediated photo-degradation and anti-bacterial activity of hetero junctioned plasmonic binary (Au/ZnO, RGO/ZnO) and ternary (RGO/Au/ZnO) nanocomposites (NC) have been reported. Higher photo-charge carrier generation, increased charge separation, improved active sites for catalysis, enhanced LSPR and larger photo-response regions have been achieved. Decoration with Au nanoparticles (ca. 11 +/- 3 and 48 +/- 5 nm) and RGO of ZnO (3D/1D) microstructures (aspect ratio 15.18) provides ternary NCs an edge over mono/bi component catalysts. The ternary NC have shown improved dye degradation capacity with 100% efficiency (5 mu M MB solution) and average adsorption degradation capacity (Q degrees) of 83.34 mg/g within 30 min of sunlight exposure (900 +/- 30 Wm(-2)). Elaborated studies by varying reaction parameters like initial dye concentration, contact time, type of NCs and initial loading of NCs reveals pseudo first order degradation kinetics. 100% microbial killing of Gram positive S.aureus strain with 60 mu g/ml of NC using sunlight as activator has proven the simultaneous multiple functionality of the NC. Further, facile green one pot hydrothermal synthesis with water as reaction medium, absence of photo-corrosion of NCs, regeneration ability (ca. 90% for 10 mu M solution) of NCs, projects a broader potential application of the synthesized NCs and could reduce the continuous requirement of such material, limiting the environmental toxicity. (C) 2017 Elsevier B.V. All rights reserved.

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