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Review

Current methods for synthesis of gold nanoparticles

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Pages 596-602 | Received 17 Sep 2014, Accepted 29 Sep 2014, Published online: 03 Nov 2014

References

  • Ankamwar B. 2010. Biosynthesis of gold nanoparticles (green-gold) using leaf extract of Terminalia catappa. J Chem. 7:1334–1339
  • Arce A, Earle MJ, Rodríguez H, Seddon KR. 2007. Separation of benzene and hexane by solvent extraction with 1-alkyl-3- methylimidazolium bis {(trifluoromethyl) sulfonyl} amide ionic liquids: effect of the alkyl-substituent length. J Phys Chem B. 111: 4732–4736.
  • Aromal SA, Vidhu VK, Philip D. 2012. Green synthesis of well-dispersed gold nanoparticles using Macrotyloma uniflorum. Spectrochim Acta A Mol Biomol Spectrosc. 85:99–104
  • Arunachalam KD, Annamalai SK, Hari S. 2013. One-step green synthesis and characterization of leaf extract-mediated biocompatible silver and goldnanoparticles from Memecylon umbellatum. Int J Nanomedicine. 8:307–1315
  • Bankar A, Joshi B, Kumar AR, Zinjarde S. 2010. Banana peel extract mediated synthesis of gold nanoparticles. Colloids and Surfaces B: Biointerfaces. 80:45–50.
  • Brust M, Walker M, Bethell D, Schiffrin DJ, Whyman RJ. 1994. Synthesis of thiol-derivatised gold nanoparticles in a two-phase liquid–liquid system. Chem Soc Chem Commun. 7:801–802
  • Cai W, Chen X. 2007. Nanoplatforms for targeted molecular imaging in living subjects. Small. 3:1840–1854.
  • Cao X, Koltypin Y, Kataby G, Prozorov R, Gedanken A. 1995. Controlling the particle size of amorphous iron nanoparticles. J Mater Res. 10:2952–2957.
  • Caruso RA, Ashokkumar M, Grieser F. 2002. Sonochemical formation of gold sols. Langmuir. 18:7831–7836.
  • Cassol CC, Umpierre AP, Machado G, Wolke SI, Dupont J. 2005. The role of Pd nanoparticles in ionic liquid in the Heck reaction. J Am Chem Soc. 127:3298–3299.
  • Chandran SP, Chaudhary M, Pasricha R, Ahmad A, Sastry M. 2006. Synthesis of gold nanotriangles and silver nanoparticles using Aloevera plant extract. Biotechnol Progress. 22:577–583
  • Chen S, Yang Y. 2002. Magnetoelectrochemistry of gold nanoparticle quantized capacitance charging. J Am Chem Soc. 124:5280–5281
  • Daniel MC, Astruc D. 2004. Gold nanoparticles: assembly, supramolecular chemistry, quantum-size-related properties, and applications toward biology, catalysis, and nanotechnology. Chem Rev. 104:293–346.
  • Das RK, Gogoi N, Bora U. 2011. Green synthesis of gold nanoparticles using Nyctanthes arbortristis flower extract. Bioprocess Biosyst Eng. 34:615–619.
  • Dupont J, Fonseca GS, Umpierre AP, Fichtner PFP, Teixeira SR. 2002. Transition-metal nanoparticles in imidazolium ionic liquids: recycable catalysts for biphasic hydrogenation reactions. J Am Chem Soc. 124:4228–4229.
  • Ebrahimnezhad Z, Zarghami N, Keyhani M, Amirsaadat S, Akbarzadeh A, Rahmati M, et al. 2013. Inhibition of hTERT gene expression by silibinin-loaded PLGA-PEG-Fe3O4 in T47D breast cancer cell line. BioImpacts. 3:67–74.
  • Elavazhagan T, Arunachalam KD. 2011. Memecylon edule leaf extract mediated green synthesis of silver and gold nanoparticles. Int J Nanomedicine. 6:1265–1278.
  • Enders Dickinson V, Williams ME, Hendrickson SM, Masui H, Murray RW. 1999. Hybrid redox polyether melts based on polyether-tailed counterions. J Am Chem Soc. 121:613–616.
  • Eustis S, El-Sayed MA. 2006. Why gold nanoparticles are more precious than pretty gold: noble metal surface plasmon resonance and its enhancement of the radiative and nonradiative properties of nanocrystals of different shapes. Chem Soc Rev. 35:209–217.
  • Fechler N, Fellinger T-P, Antonietti M. 2013. Salt templating”: a simple and sustainable pathway toward highly porous functional carbons from ionic liquids. Adv Mater. 25:75–79.
  • Freeman RG, Grabar KC, Allison KJ, Bright RM, Davis JA, Guthrie AP, et al. 1995. Self-assembled metal colloid monolayers: an approach to SERS substrates. Science. 267:1629–1632
  • Frens G. 1973. Controlled nucleation for the regulation of the particle size in monodisperse gold suspensions. Nature. 241:20–22.
  • Fujimoto T, Terauchi S, Umehara H, Kojima I, Henderson W. 2001. Sonochemical preparation of single-dispersion metal nanoparticles from metal salts. Chem Mater. 13:1057–1060.
  • Gao Y, Voigt A, Zhou M, Sundmacher K. 2008. Synthesis of single-crystal gold nano-and microprisms using a solvent-reductant- template ionic liquid. Eur J Inorg Chem. 24:3769–3775.
  • Gardea-Torresdey JL, Parsons JG, Gomez E, Peralta-Videa J, Troiani HE, Santiago P, Jose Yacaman M. 2002. Formation and growth of Au nanoparticles inside live alfalfa plants. Nano Lett. 2:397–401
  • Geethalakshmi R, Sarada DVL. 2012. Gold and silver nanoparticles from Trianthema decandra: synthesis, characterization, and antimicrobial properties. Int J Nanomed. 7:5375–5384.
  • Ghosh P, Han G, De M, Kim CK, Rotello VM. 2008. Gold nanoparticles in delivery applications. Adv Drug Deliv Rev. 60:1307–1315.
  • Haes AJ, Hall WP, Chang L, Klein WL, Van Duyne RP. 2004. A localized surface plasmon resonance biosensor: first steps toward an assay for Alzheimer's disease. Nano Lett. 4:1029–1034.
  • Hall SR, Shenton W, Engelhardt H, Mann S. 2001. Site-specific organization of gold nanoparticles by biomolecular templating. Chem Phys Chem. 2:141–191
  • Haruta M, Daté M. 2001. Advances in the catalysis of Au nanoparticles. Appl Catal A General. 222:427–437.
  • Hu M, Chen J, Li ZY, Au L, Hartland GV, Li X, et al. 2006. Gold nanostructures: engineering their plasmonic properties for biomedical applications. Chem Soc Rev. 35:1084–1094.
  • Huang CJ, Chiu PH, Wang YH, Chen KL, Linn JJ, Yang CF. 2006. Electrochemically controlling the size of gold nanoparticles. Je Electrochem Soc. 153:D193–D198
  • Huang J, Li Q, Sun D, Lu Y, Su Y, Yang X, et al. 2007. Biosynthesis of silver and gold nanoparticles by novel sundried Cinnamomum camphora leaf. Nanotechnology. 18:105104
  • Huang W, Chen S, Liu Y, Fu H, Wu G. 2011. The controlled synthesis of stable gold nanoparticles in quaternary ammonium ionic liquids by simple heating. Nanotechnology. 22:025602.
  • Itoh H, Naka K, Chujo Y. 2004. Synthesis of gold nanoparticles modified with inic liquid based on the imidazolium cation. J Am Chem Soc. 126:3026–3027.
  • Jacob DS, Bitton L, Grinblat J, Felner I, Koltypin Y, Gedanken A. 2006. Are ionic liquids really a boon for the synthesis of inorganic materials? A general method for the fabrication of nanosized metal fluorides. Chem Mater. 18:3162–3168.
  • Jain PK, Lee KS, El-Sayed IH, El-Sayed MA. 2006. Calculated absorption and scattering properties of gold nanoparticles of different size, shape, and composition: applications in biological imaging and biomedicine. J Phys Chem B. 110:7238–7248.
  • Jana NR, Gearheart L, Murphy CJ. 2001. Seeding growth for size control of 5–40 nm diameter gold nanoparticles. Langmuir. 17:6782–6786
  • Ji XH, Song XN, Li J, Bai YB, Yang WS, Peng XG. 2007. Size control of gold nanocrystals in citrate reduction: the third role of citrate. J Am Chem Soc. 129:13939
  • Kalishwaralal K, Deepak VV, Ram Kumar Pandian S, Kottaisamy M, Barathmani Kanth S, Kartikeyan B, Gurunathan S. 2010. Biosynthesis of silver and gold nanoparticles using Brevibacterium casei. Colloids Surf B Biointerfaces. 77:257–262
  • Kamat PV, Flumiani M, Hartland GV. 1998. Picosecond dynamics of silver nanoclusters. Photoejection of electrons and fragmentation. J Phys Chem B. 102:3123–3128
  • Kim KS, Choi S, Cha JH, Yeon SH, Lee H. 2006. Facile one-pot synthesis of gold nanoparticles using alcohol ionic liquids. J Mater Chem. 16:1315–1317.
  • Kim KS, Demberelnyamba D, Lee H. 2004. Size-selective synthesis of gold and platinum nanoparticles using novel thiolfunctionalized ionic liquids. Langmuir. 20:556–560.
  • Kimling J, Maier M, Okenve B, Kotaidis V, Ballot H, and Plech A. 2006. Turkevich method for gold nanoparticle synthesis revisited. J Phys Chem B. 110:15700–15707
  • Kuge K, Arisawa M, Aoki N, Hasegawa A. 2000. Preparation of gelatin layer film with gold clusters in using photographic film. Jpn J Appl Phys. 39:6550.
  • Kumar A, Murugesan S, Pushparaj V, Xie J, Soldano C, John G, et al. 2007. Conducting organic–metallic composite submicrometer rods based on Ionic liquids. Small. 3:429–433.
  • Kumar KM, Mandal BK, Sinha M, Krishnakumar V. 2012. Terminalia chebula mediated green and rapid synthesis of gold nanoparticles. Spectrochim Acta A Mol Biomol Spectrosc. 86:490–494
  • Kumar KP, Paul W, Sharma CP. 2011. Green synthesis of gold nanoparticles with Zingiber officinale extract: characterization and blood compatibility. Proc Biochem. 46:2007–2013.
  • Kumar S, Gandhi KS, Kumar R. 2007. Modeling of formation of gold nanoparticles by citrate method. Ind Eng Chem Res. 46:3128
  • Leitner W. 2003. Catalysis: A greener solution. Nature. 423:930–931.
  • Li C, Li D, Wan G, Xu J, Hou W. 2011. Facile synthesis of concentrated gold nanoparticles with low size-distribution in water: temperature and pH controls. Nanoscale Res Lett. 6:1–10
  • Link S, El-Sayed MA. 1999. Size and temperature de- pendence of the plasmon absorption of colloidal gold nanoparticles. J Phys Chem B. 103:4212–4217
  • Magnusson MH, Deppert K, Malm JO, Bovin JO and Samuelson L. 1999. Gold nanoparticles: production, reshaping, and thermal charging. J Nano Res. 1:243–251
  • Mandal S. 2014. Synthesis of radioactive gold nanoparticle in surfactant medium. J Radioanal Nucl Chem. 299:1209–1212
  • Matei A, Cernica I, Cadar O, Roman C, Schiopu V. 2008. Synthesis and characterization of ZnO-polymer nanocomposites. Int J Mater Form. 1:767–770.
  • Mittal AK, Chisti Y, Banerjee UC. 2013. Synthesis of metallic nanoparticles using plant extracts. Biotechnol Adv. 31:346–356
  • Mody VV, Siwale R, Singh A, Mody HR. 2010. Introduction to metallic nanoparticles. J Pharm Bioall Sci. 2:282–9
  • Mohanpuria P, Rana NK, Yadav SK. 2008. Biosynthesis of nanoparticles: technological concepts and future applications. J Nanopart Res. 10:507–517.
  • Mu X-D, Meng J-Q, Li Z-C, Kou Y. 2005. Rhodium nanoparticles stabilized by ionic copolymers in ionic liquids: long lifetime nanocluster catalysts for benzene hydrogenation. J Am Chem Soc. 127:9694–9695.
  • Mudring A-V, Alammar T, Backer T, Richter K. 2009. Nanoparticle synthesis in ionic liquids. In: ACS Symposium Series, Vol. 1030. Oxford University Press, pp. 177–188.
  • Nagata Y, Mizukoshi Y, Okitsu K, Maeda Y. 1996. Sonochemical formation of gold particles in aqueous solution. Radiat. Res. 146:333–338.
  • Nakanishi M, Takatani H, Kobayashi Y, Hori F, Taniguchi R, Iwase A, and Oshima R. 2005. Characterization of binary gold/platinum nanoparticles prepared by sonochemistry technique. Appl Surf Sci. 241:209–212.
  • Narayanan K, Sakthivel N. 2008. Coriander leaf mediated biosynthesis of gold nanoparticles. Mater Lett. 62:4588–4590
  • Noruzi M, Zare D, Khoshnevisan K, Davoodi D. 2011. Rapid green synthesis of gold nanoparticles using Rosa hybrida petal extract at room temperature. Spectrochim Acta A Mol Biomol Spectrosc. 79:1461–1465
  • Ojea-Jiménez I, Bastús NG, Puntes V. 2011. Influence of the sequence of the reagents addition in the citrate-mediated synthesis of gold nanoparticles. J Phys Chem C. 115:15752–15757
  • Okitsu K, Ashokkumar M, Grieser F. 2005. Sonochemical synthesis of gold nanoparticles: effects of ultrasound frequency. J Phys Chem B. 109:20673–20675.
  • Okitsu K, Mizukoshi Y, Bandow H, Maeda Y, Yamamoto T, Nagata Y. 1996. Formation of noble metal particles by ultrasonic irradiation. Ultrason Sonochem. 3:S249–S251.
  • Okitsu K, Mizukoshi Y, Yamamoto TA, Maeda Y, Nagata Y. 2007. Sonochemical synthesis of gold nanoparticles on chitosan. Mater Lett. 61:3429–3431.
  • Okitsu K, Yue A, Tanabe S, Matsumoto H, Yobiko Y, Yoo Y. 2002. Sonolytic control of rate of gold (III) reduction and size of formed gold nanoparticles: relation between reduction rates and sizes of formed nanoparticles. Bull Chem Soc Jpn. 75:2289–2296.
  • Paciotti GF, Kingston DGI, Tamarkin L. 2006. Colloidal gold nanoparticles: a novel nanoparticle platform for developing multifunctional tumor-targeted drug delivery vectors. Drug Dev Res. 67:47–54.
  • Paciotti GF, Myer L, Weinreich D, Goia D, Pavel N, McLaughlin RE, Tamarkin L. 2004. Colloidal gold: a novel nanoparticle vector for tumor directed drug delivery. Drug Deliv. 11:169–183.
  • Pal R, Panigrahi S, Bhattacharyya D, Chakraborti AS. 2013. Characterization of citrate capped gold nanoparticle-quercetin complex: experimental and quantum chemical approach. J Mol Struct. 1046:153–163.
  • Paraknowitsch JP, Zhang J, Su D, Thomas A, Antonietti M. 2010. Ionic liquids as precursors for nitrogen-doped graphitic carbon. Adv Mater. 22:87–92.
  • Parida UK, Bindhani BK, Nayak P. 2011. Green synthesis and characterization of gold nanoparticles using onion (Allium cepa) extract. World J Nano Sci Eng. 1:93–98
  • Park J-E, Atobe M, Fuchigami T. 2006. Synthesis of multiple shapes of gold nanoparticles with controlled sizes in aqueous solution using ultrasound. Ultrason Sonochem. 13:237–241.
  • Patungwasa W, Hadak JH. 2008. pH tunable morphology of the gold nanoparticles produced by citrate re- duction. Mater Chem Phys. 108:45–54
  • Philip D, Unni C, Aromal SA, Vidhu VK. 2011. Murraya Koenigii leaf-assisted rapid green synthesis of silver and gold nanoparticles. Spectrochim Acta A Mol Biomol Spectrosc. 78:899–904.
  • Philip D. 2010. Rapid green synthesis of spherical gold nanoparticles using Mangifera indica leaf. Spectrochim Acta A Mol Biomol Spectrosc. 77:807–810.
  • Pileni MP. 1997. Nanosized particles made in colloidal assemblies. Langmuir. 13:3266–3276.
  • Porta F, Rossi M. 2003. Gold nanostructured materials for the selective liquid phase catalytic oxidation. J Mol Catal A Chem. 204:553–559.
  • Reetz MT, Helbig W, Quaiser SA, Stimming U, Breuer N, Vogel R. 1995. Visualization of surfactants on nanostructured palladium clusters by a combination of STM and high-resolution TEM. Science. 267:367–369.
  • Reetz MT, Helbig W. 1994. Size-selective synthesis of nanostructured transition metal clusters. J Am Chem Soc. 116:7401–7402.
  • Richter K, Campbell PS, Baecker T, Schimitzek A, Yaprak D, Mudring A-V. 2013. Ionic liquids for the synthesis of metal nanoparticles. Phys Status Solidi B. 250:1152–1164.
  • Salata OV. 2004. Applications of nanoparticles in biology and medicine. J Nanobiotechnol. 2:3.
  • Schaal PA, Besmehn A, Maynicke E, Noyong M, Beschoten B, Simon U. 2012. Electrically conducting nanopatterns formed by chemical e-beam lithography via gold nanoparticle seeds. Langmuir. 28:2448–2454
  • Shah M, Badwaik V, Kherde Y, Waghwani HK, Modi T, Aguilar ZP, et al. 2014. Gold nanoparticles: various methods of synthesis and antibacterial applications. Front Biosci. 19:1320–1344
  • Shankar SS, Rai A, Ahmad A, Sastry M. 2004. Rapid synthesis of Au, Ag, and bimetallic Au core–Ag shell nanoparticles using Neem (Azadirachta indica) leaf broth. J Colloid Interface Sci. 275:496–502.
  • Shankar SS, Rai A, Ankamwar B, Singh A, Ahmad A, Sastry M. 2004. Biological synthesis of triangular gold nanoprisms. Nat Mater. 3:482–488.
  • Shankar SS, Rai A, Ankamwar B, Singh A, Ahmad A, Sastry M. 2004. Biological synthesis of triangular gold nanoprisms. Nat Mater. 3:482–488
  • Singh M, Kalaivani R, Manikandan S, Sangeetha N, Kumaraguru AK. 2013. Facile green synthesis of variable metallic gold nanoparticle using Padina gymnospora, a brown marine macroalga. Appl Nanosci. 3:145–151
  • Siti RM, Khairunisak AR, Azlan AZ, Rahmah N. 2013. Green synthesis of 10 nm gold nanoparticles via seeded-growth method and its conjugation properties on lateral flow immunoassay. Adv Mater Res. 686:8–12
  • Smitha SL, Philip D, Gopchandran KG. 2009. Green synthesis of gold nanoparticles using Cinnamomum zeylanicum leaf broth. Spectrochim Acta A Mol Biomol Spectrosc. 74:735–739.
  • Smithaa SL, Philip D, Gopchandrana KG. 2009. Green synthesis of gold nanoparticles using Cinnamomum zeylanicum leaf broth. Spectrochim Acta A. 74:735–739
  • Song YZ, Li X, Song Y, Cheng ZP, Zhong H, Xu JM, et al. 2013. Electrochemical synthesis of gold nanoparticles on the surface of multi-walled carbon nanotubes with glassy carbon electrode and their application. Russ J Phys Chem A. 87:74–79
  • Sujitha MV, Kannan S. 2013. Green synthesis of gold nanoparticles using Citrus fruits Citrus limon, Citrus reticulata and Citrus sinensis aqueous extract and its characterization, Spectrochim Acta A Mol Biomol Spectrosc. 102:15–23
  • Sun S, Mendes P, Critchley K, Diegoli S, Hanwell M, Evans SD, et al. 2006. Fabrication of gold micro-and nanostructures by photolithographic exposure of thiol-stabilized gold nanoparticles. Nano Lett. 6:345–350.
  • Tamuly C, Hazarika M, Borah SCh, Das MR, Boruah MP. 2013. In situ biosynthesis of Ag, Au and bimetallic nanoparticles using Piper pedicellatum C.D.C., greenchemistry approach. Colloids Surf B Biointerfaces. 1:627–634
  • Thakkar KN., Mhatre SS, and Parikh RY. 2010. Biological synthesis of metallic nanoparticles. Nanomedicine. 6:257–262.
  • Tiwari PM, Vig K, Dennis VA, Singh SR. 2011. Functionalized gold nanoparticles and their biomedical applications. Nanomaterials. 1:31–63.
  • Tomar A, Garg G. 2013. Short review on application of gold nanoparticles. Global J Pharmacol. 7 34–38.
  • Turkevich J, Stevenson PC, Hillier J. 1951. Nucleation and growth process in the synthesis of colloidal gold. Discuss Faraday Soc. 11: 55–75
  • Vadlapudi V, D. S. V. G. K. Kaladhar. 2014. Review: green synthesis of silver and gold nanoparticles. Middle-East J Sci Res. 19:834–842
  • Verma HN, Singh P, Chavan RM. 2014. Gold nanoparticle: synthesis and characterization. Vet World. 7:72–77.
  • Vinod VTP, Saravanan P, Sreedhar B, Keerthi Devi D, Sashidhar RB. 2011. A facile synthesis and characterization of Ag, Au and Pt nanoparticles using a natural hydrocolloid gum kondagogu (Cochlospermum gossypium). Colloids Surf B Biointerfaces. 83:291–298.
  • Volkert AA, Subramaniam V, Haes AJ. 2011. Implications of citrate concentration during the seeded growth synthesis of gold nanoparticles. Chem Commun. 47:478–480
  • Welton T. 1999. Room-temperature ionic liquids. Solvents for synthesis and catalysis. Chem Rev. 99:2071–2084.
  • Yang SC, Wang YP, Wang QF, Zhang RL, Ding BJ. 2007. UV irradiation induced formation of Au nanoparticles at room temperature: The case of pH values. Colloid Surf A Physicochem Eng Asp. 301:174
  • Yeung SA, Hobson R, Biggs S, Grieser F. 1993. Formation of gold sols using ultrasound. J Chem SocChemCommun. 4:378–379.
  • Yu YY, Chang SS, Lee CL, Wang CR. 1997. Gold nanorods: electrochemical synthesis and optical properties. J Phys Chem B. 101:6661–6664.
  • Zabetakis K, Ghann WE, Kumar S, Daniel M. 2012. Effect of high gold salt concentrations on the size and polydispersity of gold nanoparticles prepared by an extended turkevich-frens method. Gold Bull. 45:203–211
  • Zhang P, Wu T, Han B. 2014. Preparation of catalytic materials using ionic liquids as the media and functional components. Adv Mater. [Epub ahead of print].
  • Zhao P, Li N, Astruc D. 2013. State of the art in gold nanoparticle synthesis. Coord Chem Rev. 257:638–665.

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