Literature DB >> 20056324

Bioreduction of trivalent aurum to nano-crystalline gold particles by active and inactive cells and cell-free extract of Aspergillus oryzae var. viridis.

A R Binupriya1, M Sathishkumar, K Vijayaraghavan, S-I Yun.   

Abstract

Bioreduction efficacy of both active (AB) and inactive (IB) cells/biomass of Aspergillus oryzae var. viridis and their respective cell-free extracts (ACE and ICE) to convert trivalent aurum to gold nanoparticles were tested in the present study. Strong plasmon resonance of gold nanoparticles was observed between 540 and 560 nm in the samples obtained from AB, IB, ACE and ICE. Transmission electron microscopy (TEM), field emission scanning electron microscopy (FE-SEM), energy dispersive X-ray (EDX) and X-ray diffraction (XRD) were performed to examine the formation of gold nanoparticles. Comparing all four forms of A. oryzae var. viridis, ICE showed high gold nanoparticle productivity. The nanoparticles formed were quite uniform in shape and ranged in size from 10 to 60 nm. In addition some triangle, pentagon and hexagon-shaped nanoplates with size range of 30-400 nm were also synthesized especially at lower pH. Organics from the inactive cells are believed to be responsible for reduction of trivalent aurum to nano-sized gold particles. Organic content of the ICE was found to be double the amount of ACE. High productivity of gold nanoparticles by metabolic-independent process opens up an interesting area of nanoparticle synthesis using waste fungal biomass from industries. Copyright (c) 2009 Elsevier B.V. All rights reserved.

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Year:  2009        PMID: 20056324     DOI: 10.1016/j.jhazmat.2009.12.066

Source DB:  PubMed          Journal:  J Hazard Mater        ISSN: 0304-3894            Impact factor:   10.588


  20 in total

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2.  Green-fabrication of gold nanomaterials using Staphylococcus warneri from Sundarbans estuary: an effective recyclable nanocatalyst for degrading nitro aromatic pollutants.

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Journal:  Environ Sci Pollut Res Int       Date:  2017-11-09       Impact factor: 4.223

3.  Comparison of gold nanoparticles biosynthesized by cell-free extracts of Labrys, Trichosporon montevideense, and Aspergillus.

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Journal:  Environ Sci Pollut Res Int       Date:  2018-03-02       Impact factor: 4.223

4.  Biorecovery of gold as nanoparticles and its catalytic activities for p-nitrophenol degradation.

Authors:  Nengwu Zhu; Yanlan Cao; Chaohong Shi; Pingxiao Wu; Haiqin Ma
Journal:  Environ Sci Pollut Res Int       Date:  2016-01-07       Impact factor: 4.223

5.  Gold(III) reduction by the rhizobacterium Azospirillum brasilense with the formation of gold nanoparticles.

Authors:  Anna V Tugarova; Andrei M Burov; Marina M Burashnikova; Alexander A Kamnev
Journal:  Microb Ecol       Date:  2013-11-26       Impact factor: 4.552

Review 6.  Fungal biosynthesis of gold nanoparticles: mechanism and scale up.

Authors:  Michael Kitching; Meghana Ramani; Enrico Marsili
Journal:  Microb Biotechnol       Date:  2014-08-26       Impact factor: 5.813

7.  Biosynthesis of gold nanoparticles assisted by the intracellular protein extract of Pycnoporus sanguineus and its catalysis in degradation of 4-nitroaniline.

Authors:  Chaohong Shi; Nengwu Zhu; Yanlan Cao; Pingxiao Wu
Journal:  Nanoscale Res Lett       Date:  2015-03-25       Impact factor: 4.703

8.  Biofabrication of Anisotropic Gold Nanotriangles Using Extract of Endophytic Aspergillus clavatus as a Dual Functional Reductant and Stabilizer.

Authors:  Vijay C Verma; Santosh K Singh; Ravindra Solanki; Satya Prakash
Journal:  Nanoscale Res Lett       Date:  2010-08-28       Impact factor: 4.703

9.  Gold nanoparticles synthesized by Geobacillus sp. strain ID17 a thermophilic bacterium isolated from Deception Island, Antarctica.

Authors:  Daniela N Correa-Llantén; Sebastian A Muñoz-Ibacache; Miguel E Castro; Patricio A Muñoz; Jenny M Blamey
Journal:  Microb Cell Fact       Date:  2013-08-06       Impact factor: 5.328

10.  SERS properties of different sized and shaped gold nanoparticles biosynthesized under different environmental conditions by Neurospora crassa extract.

Authors:  Katrin Quester; Miguel Avalos-Borja; Alfredo Rafael Vilchis-Nestor; Marco Antonio Camacho-López; Ernestina Castro-Longoria
Journal:  PLoS One       Date:  2013-10-09       Impact factor: 3.240

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