Novel Green Synthesis of Silver Nanorods Using Linear Polysaccharides

International Journal of Applied Chemistry
© 2021 by SSRG - IJAC Journal
Volume 8 Issue 2
Year of Publication : 2021
Authors : Savita V. Thakare
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How to Cite?

Savita V. Thakare, "Novel Green Synthesis of Silver Nanorods Using Linear Polysaccharides," SSRG International Journal of Applied Chemistry, vol. 8,  no. 2, pp. 17-19, 2021. Crossref, https://doi.org/10.14445/23939133/IJAC-V8I2P105

Abstract:

In the current study,facile Synthesis of silver nanoparticles were initiated from precursor silver nitrate, chitosan as a capping agent and reducing agent citrate. Characterization and confirmation of fabricated Ag NPs were accomplished by Fourier transforms infrared (FT-IR), X-ray diffraction (XRD) and scanning electron microscope (SEM) analysis. In the FTIR spectrum of chitosan capped silver nanoparticle, band appeared at 1640 cm-1 which revealed the attachment of silver to nitrogen atom. XRD pattern has indicated that Ag NPs were nanorods and crystalline in nature (JCPDS card no: 4-0783). SEM image examined morphology of produced particles.

Keywords:

silver nanorods, chitosan, sodium citrate, XRD, FE-SEM

References:

[1] A.L.Porter,J.Youtie,P.Shapira and D. J. Schoeneck, Refining search terms for nanotechnology, J Nanopart Res.10(5)(2007) 715-728.
[2] A.V.Nikam,B.L.V. Prasad and A.A. Kulkarni, Wet chemical synthesis of metal oxide nanoparticles: a review, Cryst.Eng.Comm. 35(20)(2018) 5091–5107.
[3] J.Singh,T.Dutta,K.H. Kim , M.Rawat, P.Samddar and P. Kuma, Green synthesis of metals and their oxide nanoparticles: applications for environmental remediation. Journal of Nanobiotechnology, 16(1) 1-24.
[4] Vicky V. Mody, Rodney Siwale, Ajay Singh, and Hardik R. Mody 2010 Current Strategies for Noble Metal Nanoparticle Synthesis.Journal of Pharmacy & Bioallied Sciences, 2(4) 282–289.
[5] A. Biswas,I. S. Bayer,A.S. Biris,T.Wang, E.Dervishi, and F. Faupel,Advances in top–down and bottom–up surface nanofabrication: Techniques, applications & future prospects, Adv. Colloid Interface Sci. 170(1-2)(2018) 2–27.
[6] C.J.Murphy,T.K.Sau ,A.M.Gole , C.J.Orendorff,J.Gao ,L.Gou and T.Li, Anisotropic Metal Nanoparticles: Synthesis, Assembly, and Optical Applications, J. Phys. Chem. B, 109(29)(2012) 13857–13870.
[7] HM Manukumar,S Umesha and HN Kumar,Promising biocidal activity of thymol loaded chitosan silver nanoparticles (TC@AgNPs) as anti-infective agents against perilous pathogens, Int. J. Biol. Macromol. 102(1)(2005) 1257–1265.
[8] S.V.ThakareThe Influence of Calcination Temperature on the Formation of Nickel Oxide Nanoparticles by Sol-gel Method SSRG int. j. appl. chem. e 8 (1)(2021) 26-29.
[9] S. Iravani,H Korbekandi,SV Mirmohammadi and B Zolfaghari,Synthesis of silver nanoparticles: chemical, physical and biological methods,Res. Pharm. Sci. 9(6)(2017) 385–406.
[10] J. Venkatesan ,JY Lee , DS Kang,S Anil ,SK Kim ,MS Shim and DG Kim, Antimicrobial and anticancer activities of porous chitosan-alginate biosynthesized silver nanoparticles.Int. J. Biol. Macromol. 98(2014)515–525.
[11] H.Chugh,D.Sood,I.Chandra,V.Tomar,G.Dhawan and R. Chandra, Role of gold and silver nanoparticles in cancer nano-medicine, Artif Cells Nanomed Biotechno l46(1)(2018)1–11.
[12] R.Kalaivani,M. Maruthupandy,T. Muneeswaran,A.H. Beevi,M. Anand,CM Ramakritinan and A.K.Kumaraguru Synthesis of chitosan mediated silver nanoparticles (Ag NPs) for potential antimicrobial applications, Front Lab Med 2(1)(2018)30–35
[13] F.Benyettou,R.Rezgui, F.Ravaux, T.Jaber,K.Blumer,M. Jouiad and A.Trabolsi,Synthesis of silver nanoparticles for the dual delivery of doxorubicin and alendronate to cancer cells, J. Mater. Chem. B, 3(36)(2015) 7237–7245
[14] N.YAN,B. Z.Tang and W.X. Wang, In Vivo Bioimaging of Silver Nanoparticle Dissolution in the Gut Environment of Zooplankton. ACS Nano.12(12)(2018) 12212–12223.
[15] G.L.Wang ,X.F.Xu ,L.H.Cao ,C.H.He , Z.J. Li and C.Zhang, Mercury(ii)-stimulated oxidase mimetic activity of silver nanoparticles as a sensitive and selective mercury(ii) sensor, RSC Adv. 4(12)(2014) 5867-5872.
[16] S.Iravani, H. Korbekandi S.V. Mirmohammadi and B. Zolfaghari, Synthesis of silver nanoparticles: chemical, physical and biological methods, Res Pharm Sci 9(6)(2014) 385–406.
[17] C.Quintero-Quiroz ,N.Acevedo,J.Zapata-Giraldo ,L.E.Botero,J. Quintero,D.Zárate-Triviño and V. Z.Pérez,Optimization of silver nanoparticle synthesis by chemical reduction and evaluation of its antimicrobial and toxic activity, Biomater. Res.,23(1)(2019) 1-15
[18] K.Jalaja,D. Naskar,S.C.Kundu, and N.R.James Potential of electrospun core–shell structured gelatin–chitosan nanofibers for biomedical applications,Carbohydr. Polym.136 (3)(2016) 1098-1107.