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[34] lin Z, Wu J, xue R, yang y. spectroscopic characterization of Au 3+ biosorption by waste biomass of Saccharomyces cerevisiae .
spectrochim Acta 2005;61:761-765.
[35] Kowshik M, Ashtaputre s, Kharrazi s, Vogel W, Urban J, Kulkarni sK, Paknikar KM. extracellular synthesis of silver nanoparticles by
a silver-tolerant yeast strain MKy3. Nanotechnology 2003;14:95-100.
[36] Gericke M, Pinches A. Biological synthesis of metal nanoparticles. hydrometallurgy 2006;83:132-140.
[37] Gericke M, Pinches A. Microbial production of gold nanoparticles. Gold Bull 2006;39:22-28.
[38] Jha AK, Prasad K, Prasad K. A green low-cost biosynthesis of sb 2 o 3 nanoparticles. Biochem eng J 2009;43:303-306.
[39] Peng h, yang A, xiong J. Green, microwave-assisted synthesis of silver nanoparticles using bamboo hemicelluloses and glucose in an
aqueous medium. carbohydr Polym 2013;91:348-355.
[40] Raghunandan d, Mahesh Bd, Basavaraja s, Balaji sd, Manjunath sy, Venkataraman A. Microwave-assisted rapid extracellular
synthesis of stable bio-functionalized silver nanoparticles from guava ( Psidium guajava ) leaf extract. J Nanopart Res
2011;13:2021-2028.
[41] eluri R, Paul B. Microwave assisted green synthesis of nickel nanoparticles using sodium hypophosphite. Mater lett 2012;76:36-39.
[42] Galletti A, Antonetti c, Venezia AM, Giambastiani G. An easy microwave-assisted process for the synthesis of nanostructured palladium
catalysts and their use in the selective hydrogenation of cinnamaldehyde. Appl catal A 2010;386:124-131.
[43] yu y, Zhao y, huang T, liu h. Microwave-assisted synthesis of palladium nanocubes and nanobars. Mater Res Bull
2010;45:159-164.
[44] dahal N, GarcĂ­a s, Zhou J, humphrey sM. Beneficial effects of microwave-assisted heating versus conventional heating in noble metal
nanoparticle synthesis. Acs Nano 2012;6:9433-9446.
[45] Bhosale MA, Bhatte Kd, Bhanage BM. A rapid, one pot microwave assisted synthesis of nanosize cuprous oxide. Powder Technol
2013;235:516-519.
[46] Bhatte K, sawant d, deshmukh K, Bhanage BM. Additive free microwave assisted synthesis of nanocrystalline Mg(oh) 2 and Mgo.
Particuology 2012;10:384-387.
[47] Bhatte K, Tambade P, Fujita s, Arai M, Bhanage B. Microwave-assisted additive free synthesis of nanocrystalline zinc oxide. Powder
Technol 2010;203:415-418.
[48] Idalia B, Igor d, Markus N. one-minute synthesis of crystalline binary and ternary metal oxide nanoparticles. chem commun
2008:886-888.
[49] suslick Ks. The chemical effects of ultrasound. sci Am 1989 (2);260:80-86.
[50] dhas NA, Gedanken AA. sonochemical preparation and properties of nanostructured palladium metallic clusters. J Mater chem
1998;8:445-450.
[51] Fujimoto T, Terauchi s, Umehara h, Kojima I, henderson W. sonochemical preparation of single-dispersion metal nanoparticles from
metal salts. chem Mater 2001;13:1057-1060.
[52] Mizukoshi y, okitsu K, Maeda y, yamamoto TA, oshima R, Nagata y. sonochemical preparation of bimetallic nanoparticles of gold/
palladium in aqueous solution. J Phys chem B 1997;101:7033-7037.
[53] Bhatte K, Fujita s, Arai M, Pandit A, Bhanage B. Ultrasound assisted additive free synthesis of nanocrystalline zinc oxide. Ultrason
sonochem 2011;18:54-58.
[54] Reetz MT, helbig W. size-selective synthesis of nanostructured transition metal clusters. J Am chem soc 1994;116:1401-1402.
[55] deshmukh KM, Qureshi Zs, Bhatte Kd, Venkatesan KA, srinivasan TG, VasudevaRao PR, Bhanage BM. one-pot electrochemical
synthesis of palladium nanoparticles and their application in the suzuki reaction. New J chem 2011;35:2747-2751.
[56] Khaydarov RA, Khaydarov RR, Gapurova o, estrin y, scheper T. electrochemical method for the synthesis of silver nanoparticles. J
Nanopart Res 2009;11:1193-1200.
[57] li s, deng d, shi Q liu s. electrochemical synthesis of a graphene sheet and gold nanoparticle-based nanocomposite, and its applica-
tion to amperometric sensing of dopamine. Microchim Acta 2012;177:325-331.
[58] Taleb A, Mangeney c, Ivanova V. electrochemical synthesis using a self-assembled Au nanoparticle template of dendritic films with
unusual wetting properties. Nanotechnology 2011;22:205301 (9 pp.).
[59] Mohanty Us. electrodeposition: a versatile and inexpensive tool for the synthesis of nanoparticles, nanorods, nanowires, and nanoclu-
sters of metals. J Appl electrochem 2011;41:257-270.
[60] Reisse J, Francois h, Vandercammen J, Fabre o, Kirsch-de Mesmaeker A, Maerschalk c, delplancke Jl. sonoelectrochemistry in
aqueous electrolyte: a new type of sonoelectroreactor. electrochim Acta 1994;39:37-39.
[61] Reisse J, caulier T, deckerkheer c, Fabre o, Vandercammen J, delplancke Jl, Winand R. Quantitative sonochemistry. Ultrason
sonochem 1996;3:s147-s151.
[62] Mastai y, Polsky R, Koltypin y, Gedanken A, hodes G. Pulsed sonoelectrochemical synthesis of cadmium selenide nanoparticles. J Am
chem soc 1999;121:10047-10052.
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