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Original Articles

Optical and morphological studies of L-histidine functionalised silver nanoparticles synthesised by two different methods

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Pages 167-180 | Received 01 Mar 2013, Accepted 04 Jun 2013, Published online: 26 Sep 2013

References

  • Zedler L, Theil F, Csa ki A, Fritzsche W, Rau S, Schmitt M, Popp J, Dietzek B. Ruthenium dye functionalized gold nanoparticles and their spectral responses. RSC Adv. 2012;2:4463–4471.
  • El-Sayed MA. Some interesting properties of metals confined in time and nanometer space of different shapes. Acc Chem Res. 2001;34:257–264.
  • Chen MS, Goodman DW. The structure of catalytically active Au on Titania. Science. 2004;306:252–255.
  • Chen HM, Liu RS, Li H, Zeng HC. Generating isotropic superparamagnetic interconnectivity for the two-dimensional organization of nanostructured building blocks. Angew Chem Int Ed. 2006;45:2713–2717.
  • Cao YWC, Jin R, Mirkin CA. Nanoparticles with Raman spectroscopic fingerprints for DNA and RNA detection. Science. 2002;297:1536–1540.
  • Nie S, Emory SR. Probing single molecules and single nanoparticles by surface-enhanced Raman scattering. Science. 1997;275:1102–1106.
  • Ghosh P, Han G, De M, Kim CK, Rotello VM. Gold nanoparticles in delivery applications. Adv Drug Deliv Rev. 2008;60:1307–1315.
  • Khan Z, Al-Thabaiti SA, Obaid AY, Al-Youbi AO. Preparation and characterization of silver nanoparticles by chemical reduction method. Colloids Surf B Biointerfaces. 2011;82:513–517.
  • Zhu YP, Wang XK, Guo WL, Wang JG, Wang C. Sonochemical synthesis of silver nanorods by reduction of silver nitrate in aqueous solution. Ultrason Sonochem. 2010;17:675–679.
  • Xu H, Suslick KS. Sonochemical synthesis of fluorescent Ag nanoclusters. ACS Nano. 2010;4:3209–3214.
  • Xia Y, Xiong Y, Lim B, Skrabalak SE. Shape controlled synthesis of metal nanoclusters: simple chemistry meets complex physics? Angew Chem Int Ed. 2009;48:60–103.
  • Akbarzadeh A, Zare D, Farhangi A, Reza Mehrabi M, Norouzian D, Gangestaninejad S, Moghadam M, Bararpour N. Synthesis and characterization of gold nanoparticles by tryptophan. Am J Appl Sci. 2009;6:691–695.
  • El-Kheshen AA, Sanaa F, El-Rab G. Effect of reducing and protecting agents on size of silver nanoparticles and their anti-bacterial activity. Der Pharma Chemica. 2012;4:53–65.
  • Dahl AJ, Maddux LSB, Hutchison EJ. Toward greener nanosynthesis. Chem Rev. 2007;107:2228–2269.
  • Wigginton NS, De Titta A, Piccapietra F, Dobias J, Neasatyy VJ, Suter MJF, Bemier-Latmani R. Binding of silver nanoparticles to bacterial proteins depends on surface modifications and inhibits enzymatic activity. Environ Sci Technol. 2010;44:2163–2168.
  • Singh S, Patel P, Jaiswal S, Prabhune AA, Ramana CV, Prasad BLV. A direct method for the preparation of glycolipid-metal nanoparticle conjugates: sophorolipids as reducing and capping agents for the synthesis of water re-dispersible silver nanoparticles and their antibacterial activity. New J Chem. 2009;33:646–652.
  • Kumar CSSR. Biofunctionalization of nanomaterials. 1st ed. Weinheim: Wiley-VCH; 2005.
  • Caroline ML, Sankar R, Indirani RM, Vasudevan S. Growth, optical, thermal and dielectric studies of an amino acid organic nonlinear optical material: L-alanine. Mater Chem Phys. 2009;114:490–494.
  • Liu Z, Xing Z, Zu Y, Tan S, Zhao L, Zhou Z, Sun T. Synthesis and characterization of L-histidine capped silver nanoparticles. Mat Sci Eng C. 2012;32:811–816.
  • Liu Z, Zu Y, Fu Y, Meng R, Guo S, Xing S, Tan S. Hydrothermal synthesis of histidine-functionalized single-crystalline gold nanoparticles and their pH-dependent UV absorption characteristic. Colloids Surf B Biointerfaces. 2012;76:311–316.
  • Lim JK, Kim Y, Lee SY, Joo S-W. Spectroscopic analysis of L-histidine adsorbed on gold and silver nanoparticle surfaces investigated by surface-enhanced Raman scattering. Spectrochim Acta A. 2008;69:286–289.
  • Creighton A, Blatchford CG, Albrecht MG. Plasma resonance enhancement of Raman scattering by pyridine adsorbed on silver or gold sol particles of size comparable to the excitation wavelength. J Chem Soc, Faraday Trans. 1979;75:790–798.
  • Tricker RAR. Introduction to meteorological optics. New York, NY: American Elsevier Publishing; 1970. p. 225–229.
  • Evanoff DD Jr, Chumanov G. Synthesis and optical properties of silver nanoparticles and arrays. ChemPhysChem. 2005;6:1221–1231.
  • Haes AJ, Hall WP, Chang L, Klein WL, Van Duyne RP. A localized surface Plasmon resonance biosensor: first steps toward an assay for Alzheimer's disease. Nano Lett. 2004;4:1029–1034.
  • Poole CP Jr, Owens FJ. Introduction to nanotechnology. New York, NY: Wiley; 2003. Chapter 4; p. 74–86.
  • Kiruba Daniel SCG, Sironmani TA, Tharmaraj V, Pitchumani K. Synthesis and characterization of fluorophore attached silver nanoparticles. Bull Mater Sci. 2011;34:639–643.
  • Sileikaite A, Prosycevas I, Puiso J, Juraitis A, Tamulevičius S. Investigation of silver nanoparticles formation kinetics during reduction of silver nitrate with sodium citrate. Mater Sci. 2009;15:21–27.
  • Umadevi M, Vanelle P, Terme T, Rajkumar BJM, Ramakrishnan V. Fluorescence quenching of 1,4-dihydroxy-2, 3-dimethyl-9,10-anthraquinone by silver nanoparticles: size effect. J Fluoresc. 2009;19:3–10.
  • Mardashev SR, Kharitonenkev IG, Semina LA, Gonchar NA. Study of the structure of the histidine decarboxylase of Micrococcus sp.n. by the method of circular dichroism. Bhiokhimiia. 1976;41:308–315.
  • Joseph Kirubaharan C, Kalpana D, Lee YS, Kim AR, Yoo DJ, Nahm KS, Kumar GG. Biomediated silver nanoparticles for the highly selective copper(II) ion sensor applications. Ind Eng Chem Res. 2012;51:7441–7446.
  • Choi SH, Lee SH, Hwang YM, Lee KP, Kang HD. Interaction between the surface of the silver nanoparticles by g-irradiation and organic molecules containing thiol group. Radiat Phys Chem. 2003;67:517–521.
  • Xu Z, Hu G. Simple and green synthesis of monodisperse silver nanoparticles and surface-enhanced Raman scattering activity. RSC Adv. 2012;2:11404–11409.
  • Chadha R, Bhandari S, Kataria D, Gupta S, Singh JD. Exploring the potential of lecithin/chitosan nanoparticles in enhancement of antihypertensive efficacy of hydrochlorothiazide. J Microencapsul. 2012;8:805–812.
  • Chuang C-H, Chen Y-T. Raman scattering of L-tryptophan enhanced by surface plasmon of silver nanoparticles: vibrational assignment and structural determination. J Raman Spectrosc. 2009;40:150–156.
  • Ratajczak H, Barycki J, Pietraszko A, Baran J, Debru S, May M, Venturin J. Preparation and structural study of a novel nonlinear molecular material: the L-histidinum dihydrogenarsenate orthoarsenic acid crystal. J Mol Struct. 2000;526:269–278.
  • Puviarasan N, Arjunan V, Mohan S. FTIR and FT-Raman spectral investigations on 4-aminoquinaldine and 5-aminoquinoline. Turk J Chem. 2004;28:53–65.

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