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To study the Properties of Bio Synthesized Silver Nanoparticles

Monika Singhmar, Parul Katyal

Abstract


Recently colloids silver nanoparticles have attained much attention in global nanotechnology market due to valuable application for catalytic, biomedical, electronics and widely as Antimicrobial agents. In the present work author have synthesized and characterized the Colloids silver nanoparticles with three biosynthesis methods and the detail characterization of particle has been done by UV–Visible spectroscopy, AFM, FTIR, and with DLS techniques. Particles formation was conformed from UV spectra of nanoparticles. Size of the nanoparticle was confirmed by DLS, and AFM was ranged from 10 to 40 nm

Keywords


biosynthesis, SEM, silver nanoparticle, UV

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References


D.K.B. Harekrishna Bar, P. Gobinda Sahoo, P. Sarkar, P.D. Sankar. Green synthesis of silver nanoparticles using latex of Jatropha curcas, Colliod Surf A. 2009; 39(3): 134–9p.

A. Krolikowska, K.A. Michota, A. Bukowska. SERS studies on the structure of thioglycolic acid monolayers on silver and gold, J. Surf Sci. 2003; 532: 227232p.

M.U.D. Oliveira, D. Sachet, A. Zorbing. Influence of synthetic parameters on the size, structure, and stability of dodecanethiol-stabilized silver nanoparticles, J Colloid Interface Sci. 2005; 292: 429–35p.

A.M.P. Ahmad, S. Senapati, D. Mandal, M.I. Khan, R. Kumar, M. Sastry. Extracellular biosynthesis of silver nanoparticles using the fungus Fusarium oxysporum, Colloids Surf B, Biointerfaces. 2003; 28: 313–8p.

A. Jha, K. Prasad, K. Prasad, A.R. Kulkarni. Plant system: nature’s nanofactory, Colloids Surf B, Biointerf. 2009; 73: 219–23p.

K. Parashar. Digest bioinspired synthesis of silver nanoparticles, J Nanomater Biostruct. 2009; 4: 159–66p.

N.A. Begum. Mondal colloids and surface B, Biointerfaces. 2009; 71: 113–8p.

S. Yasin, L. Liu, J. Yao. Biosynthesis of silver nanoparticles by bamboo leaves extract and their antimicrobial activity, J Fiber Bioeng Inform. 2013; 6.1: 77–84p.

B. Lu, et al. Determination of flavonoids and phenolic acids in the extract of bamboo leaves using near-infrared spectroscopy and multivariate calibration, Afr J Biotechnol. 2011; 10.42: 8448–55p.

B. Lu, et al. Toxicology and safety of anti-oxidant of bamboo leaves. Part 1: acute and subchronic toxicity studies on anti-oxidant of bamboo leaves, Food Chem Toxicol. 2005; 43.5: 783–9p.

B. Lu, et al. Toxicology and safety of antioxidant of bamboo leaves. Part 2: developmental toxicity test in rats with antioxidant of bamboo leaves, Food Chem Toxicol. 2006; 44.10: 1739–43p.

E.M. Egorova, A.A. Revina. Synthesis of metallic nanoparticles in reverse micelles in the presence of quercetin, Colloids Surf A: Physicochem Eng Aspects. 2000: 168.1: 87–96p.

R. Janardhanan, M. Karuppaiah, N. Hebalkar, T.N. Rao. Synthesis and surface chemistry of nano silver particles, Polyhedron. 2009; 28(12): 2522–30p.

A. Amany, S.F. Gad El-Rab, F. Gad. Effect of reducing and protecting agents on size of silver nanoparticles and their anti-bacterial activity, Der Pharm Chem. 2012; 4.1: 53–65p.

J.-L. Jia, et al. Biosynthesis of gold nanoparticles using novel bamboo (Bambusa chungii) leaf extracts, J Nanosci Nanotechnol. 2015: 15.2: 1674–7p.

R. Singh, S.K. Sahu, M. Thangaraj. Biosynthesis of silver nanoparticles by marine invertebrate (polychaete) and assessment of its efficacy against human pathogens, J Nanopart. 2014.


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