Photocatalytic activity of biogenic silver nanoparticles synthesized using yeast (Saccharomyces cerevisiae) extract
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  • 作者:Kaushik Roy ; C. K. Sarkar ; C. K. Ghosh
  • 关键词:Biogenic silver nanoparticles ; Yeast (Saccharomyces cerevisiae) extract ; UV–Vis spectroscopy ; XRD ; TEM ; Photocatalytic activity
  • 刊名:Applied Nanoscience
  • 出版年:2015
  • 出版时间:November 2015
  • 年:2015
  • 卷:5
  • 期:8
  • 页码:953-959
  • 全文大小:1,074 KB
  • 参考文献:Ameta A, Ameta R, Ahuja M (2013) Photocatalytic degradation of methylene blue over ferric tungstate. Sci Revs Chem Commun 3(3):172-80
    Awwad AM, Salem NM, Abdeen AO (2013) Green synthesis of silver nanoparticles using carob leaf extract and its antibacterial activity. Int J Indus Chem 4(29):1-
    Banerjee P, Satapathy M, Mukhopahayay A, Das P (2014) Leaf extract mediated green synthesis of silver nanoparticles from widely available Indian plants: synthesis, characterization, antimicrobial property and toxicity analysis. Bioresour Bioprocess 1(3):1-0
    Bastús NG, Merko?i F, Piella J, Puntes V (2014) Synthesis of highly monodisperse citrate-stabilized silver nanoparticles of up to 200 nm: kinetic control and catalytic properties. Chem Mater 26(9):2836-846CrossRef
    Bonde SR, Rathod DP, Ingle AP, Ade RB, Gade AK, Rai MK (2012) Murraya koenigii-mediated synthesis of silver nanoparticles and its activity against three human pathogenic bacteria. Nanosci Methods 1:25-6CrossRef
    Comparelli R, Fanizza E, Curri ML, Cozzoli PD, Mascolo G, Agostiano A (2005) UV-induced photocatalytic degradation of azo dyes by organic-capped ZnO nanocrystals immobilized onto substrates. Appl Catalysis B: Environ 60(1):1-1CrossRef
    Gomez V, Larrechi MS, Callao MP (2007) Kinetic and adsorption study of acid dye removal using activated carbon. Chemosphere 69(7):1151-158CrossRef
    Honary S, Barabadi H, Gharaei-Fathabad E, Naghibi F (2013) Green synthesis of silver nanoparticles induced by the fungus Penicillium citrinum. Tropic J Pharm Res 12(1):7-1
    Houas A et al (2001) Photocatalytic degradation pathway of methylene blue in water. Appl Catalysis B: Environ 31:145-57CrossRef
    Huang Z, Jiang X, Guo D, Gu N (2011) Controllable synthesis and biomedical applications of silver nanomaterials. J Nanosci Nanotechnol 11(11):9395-408CrossRef
    Isaac RS, Sakthivel G, Murthy C (2013) Green synthesis of gold and silver nanoparticles using Averrhoa bilimbi fruit extract. J Nanotech, Article ID 906592:6 pages
    Kansal SK, Singh M, Sudo D (2008) Studies on TiO2/ZnO photocatalysed degradation of lignin. J Hazard Mater 153:412-17CrossRef
    Kelly KL, Coronado E, Zhao LL, Schatz GC (2003) The optical properties of metal nanoparticles: the influence of size, shape and dielectric environment. J Phys Chem B 107(3):668-77CrossRef
    Kim YH, Hensley R (1997) Effective control of chlorination and dechlorination at wastewater treatment plants using redox potential. Water Environ Res 69(5):1008-014CrossRef
    Kumar P, Govindaraju M, Senthamilselvi S, Premkumar K (2013) Photocatalytic degradation of methyl orange dye using silver nanoparticles synthesized from Ulva lactuca. Colloids Surf B: Biointerfaces 103:658-61CrossRef
    Lee K, El-Sayed MA (2006) Gold and silver nanoparticles in sensing and imaging: sensitivity of plasmon response to size, shape, and metal composition. J Phys Chem B 110(39):19220-9225CrossRef
    Li Y, Liu Q, Shen W (2011a) Morphology-dependent nanocatalysis: metal particles. Dalton Trans 40:5811-826CrossRef
    Li M, Liao X, Zhang D, Du G, Chen J (2011b) Yeast extract promotes cell growth and induces production of polyvinyl alcohol-degrading enzymes. Enzyme Res, Article ID 179819:8 pages
    Li G, He D, Qian Y, Guan B, Gao S, Cui Y, Yokoyama K, Wang L (2012) Fungus-mediated green synthesis of silver nanoparticles using Aspergillus terreus. Int J Mol Sci 13(1):466-76
    L?berg J, Holmberg JP, Mattisson I, Arvidsson A, Ahlberg E (2013) electronic properties of tio2 nanoparticles films and the effect on Apatite-forming ability. Int J Dent, Article ID 139615:14 pages
    Malarkodi C, Rajeshkumar S, Paulkumar K, Gnanajobitha G, Vanaja M, Annadurai G (2013) Bacterial synthesis of silver nanoparticles by using optimized biomass growth of Bacillus sp. Nanosci Nanotech: An Int J 3(2):26-2
    Mosser et al (2011) Characterization of chromatographic yeast extract fractions promoting CHO cell growth. BMC Proceedings 5(Suppl 8):P99CrossRef
    Phanjom P, Sultana A, Sarma H, Ramchiary J, Goswami K, Baishya P (2012) Plant mediated synthesis of silver nanoparticles using Elaeagnus latifolia leaf extract. Dig J Nanomater Bios 7(3):1117-123
    Prakasha P, Gnanaprakasama P, Emmanuela R, Arokiyarajb S, Saravanan M (2013) Green synthesis of silver nanoparticles from leaf extract of Mimusops elengi, Linn. for enhanced antibacterial activity against multi drug resistant clinical isolates. Colloids Surf B: Biointerfaces 108:255-59CrossRef
    Roy K, Biswas S, Banerjee PC (2013) ‘Green-synthesis of silver nanoparticles by using Grape (Vitis vinifera) fruit extract: characterization of the particles and study of antibacterial activity. Res J Pharm Biol Chem Sci 4(1):1271-278
    Sathyavathi R, Krishna MB, Rao SV, Saritha R, Rao DN (2010) Biosynthesis of silver nanoparticles using Coriandrum sativum leaf extract and their application in nonlinear optics. Adv Sci Lett 3(2):138-43CrossRef
    Satyavani K, Gurudeeban S, Ramanatha
  • 作者单位:Kaushik Roy (1) (2)
    C. K. Sarkar (1)
    C. K. Ghosh (2)

    1. Department of Electronics and Telecommunication Engineering, Jadavpur University, Kolkata, 700032, India
    2. School of Material Science and Nanotechnology, Jadavpur University, Kolkata, 700032, India
  • 刊物类别:Chemistry and Materials Science
  • 刊物主题:Materials Science
    Nanotechnology
  • 出版者:Springer Berlin / Heidelberg
  • ISSN:2190-5517
文摘
Synthesis of metallic and semiconductor nanoparticles through physical and chemical route is quiet common but biological synthesis procedures are gaining momentum due to their simplicity, cost-effectivity and eco-friendliness. Here, we report green synthesis of silver nanoparticles from aqueous solution of silver salts using yeast (Saccharomyces cerevisiae) extract. The nanoparticles formation was gradually investigated by UV–Vis spectrometer. X-ray diffraction analysis was done to identify different phases of biosynthesized Ag nanoparticles. Transmission electron microscopy was performed to study the particle size and morphology of silver nanoparticles. Fourier transform infrared spectroscopy of the nanoparticles was performed to study the role of biomolecules capped on the surface of Ag nanoparticles during interaction. Photocatalytic activity of these biosynthesized nanoparticles was studied using an organic dye, methylene blue under solar irradiation and these nanoparticles showed efficacy in degrading the dye within a few hours of exposure. Keywords Biogenic silver nanoparticles Yeast (Saccharomyces cerevisiae) extract UV–Vis spectroscopy XRD TEM Photocatalytic activity

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