By Sivakumar Manickam, Muthupandian Ashokkumar
As nanomaterials and their finish items occupy the head place of patron markets, it turns into important to investigate their new release procedures. one of many eco-friendly chemistry rules underlines the necessity for strange power resources to generate them. using the extraordinary power from the cave in of cavitation bubbles, generated through both ultrasound or hydrodynamic forces, for the new release of nanomaterials is a advantage to think about during this "Green Chemical Processing Era."
A wide selection of nanomaterials were constructed long ago decade utilizing cavitation or coupling cavitation with different ideas resembling microwave, photochemistry, and electrochemistry, leading to nanomaterials with particular morphologies, diminished measurement, slim measurement distribution, and innumerous benefits. whereas a number of presently to be had books care for the elemental elements of cavitation and sonochemistry, this publication is dedicated particularly to the technologically very important nanomaterials received by means of cavitation.
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Extra resources for Cavitation: A Novel Energy-Efficient Technique for the Generation of Nanomaterials
Salavati-Niasari, M. and Sobhani, A. (2012). Simple sonochemical synthesis and characterization of HgSe nanoparticles. Ultrason. , 19(5), pp. 1079–1086. 26 References Ghows, N. and Entezari, M. H. (2012). Sono-synthesis of core–shell nanocrystal (CdS/TiO2) without surfactant. Ultrason. , 19(5), pp. 1070–1078. González, J. , Nacimiento, F. and Tirado, J. L. (2011). CoSngraphite electrode material prepared by using the polyol method and high-intensity ultrasonication. Electrochim. Acta, 56(27), pp.
365–372. Safarifard, V. and Morsali, A. (2012a). Sonochemical syntheses and characterization of nano-sized lead(II) coordination polymer with 27 Development of Multifunctional Nanomaterials by Cavitation ligand 1H-1,2,4-triazole-3-carboxylate. Ultrason. , 19(2), pp. 300–306. Safarifard, V. and Morsali, A. (2012b). Sonochemical syntheses of a nanosized copper(II) supramolecule as a precursor for the synthesis of copper(II) oxide nanoparticles. Ultrason. , 19(4), pp. 823– 829. Shirsath, S. , Hage, A.
2010). 4 and at a temperature of 40°C, the sonochemically prepared Fe3O4 MNPs were able to remove approximately 90% of Rhodamine B. The analysis also revealed that both ·OH and O2–˙/H2O˙ radicals are involved in the Fe3O4 participating catalytic reaction, and therefore the radicals are the main reactive species to degrade the organic pollutants. 1 CdS/TiO2 Nanocomposites A core–shell nanocomposite (CdS/TiO2) with the particle size of ~11 nm was successfully synthesized by Ghows and Entezari (2012) at a relatively low temperature using a combination of ultrasound and new microemulsion (o/w) but without incorporating any surfactant.
Cavitation: A Novel Energy-Efficient Technique for the Generation of Nanomaterials by Sivakumar Manickam, Muthupandian Ashokkumar