1 3
Topics in Current Chemistry (2020) 378:40
162. Shafi KVPM, Ulman A, Yan X, Yang N-L, Estournès C, White H, Rafailovich M (2001) Sonochemical synthesis of functionalized amorphous iron oxide nanoparticles. Langmuir 17(16):5093–
5097. https ://doi.org/10.1021/la010 421+
163. Vijayakumar R, Koltypin Y, Felner I, Gedanken A (2000) Sonochemical synthesis and characterization of pure nanometer-sized Fe 3 O 4 particles. Mater Sci Eng A 286(1):101–105. https ://doi.
org/10.1016/S0921 -5093(00)00647 -X
164. Abu Mukh-Qasem R, Gedanken A (2005) Sonochemical synthesis of stable hydrosol of Fe 3 O 4
nanoparticles. J Colloid Interface Sci 284(2):489–494. https ://doi.org/10.1016/j.jcis.2004.10.073
165. Rahmawati R, Kaneti YV, Taufiq A, Sunaryono YB, Suyatman N, Kurniadi D, Hossain MSA,
Yamauchi Y (2018) Green synthesis of magnetite nanostructures from naturally available iron
sands via sonochemical method. Bull Chem Soc Jpn 91(2):311–317. https ://doi.org/10.1246/
bcsj.20170 317
166. Hee Kim E, Sook Lee H, Kook Kwak B, Kim B-K (2005) Synthesis of ferrofluid with magnetic
nanoparticles by sonochemical method for MRI contrast agent. J Magn Magn Mater 289:328–330.
https ://doi.org/10.1016/j.jmmm.2004.11.093
167. Abbas M, Torati SR, Kim C (2015) A novel approach for the synthesis of ultrathin silica-coated
iron oxide nanocubes decorated with silver nanodots (Fe 3 O 4 /SiO 2 /Ag) and their superior catalytic
reduction of 4-nitroaniline. Nanoscale 7(28):12192–12204. https ://doi.org/10.1039/C5NR0 2680F
168. Shafi KVPM, Koltypin Y, Gedanken A, Prozorov R, Balogh J, Lendvai J, Felner I (1997) Sonochemical preparation of nanosized amorphous NiFe 2 O 4 particles. J Phys Chem B 101(33):6409–
6414. https ://doi.org/10.1021/jp970 893q
169. Shafi KVPM, Gedanken A, Prozorov R, Balogh J (1998) Sonochemical preparation and sizedependent properties of nanostructured CoFe 2 O 4 particles. Chem Mater 10(11):3445–3450. https ://
doi.org/10.1021/cm980 182k
170. Sodipo BK, Aziz AA (2018) One minute synthesis of amino-silane functionalized superparamagnetic iron oxide nanoparticles by sonochemical method. Ultrason Sonochem 40:837–840. https ://
doi.org/10.1016/j.ultso nch.2017.08.040
171. Sathya A, Kalyani S, Ranoo S, Philip J (2017) One-step microwave-assisted synthesis of waterdispersible Fe 3 O 4 magnetic nanoclusters for hyperthermia applications. J Magn Magn Mater
439:107–113. https ://doi.org/10.1016/j.jmmm.2017.05.018
172. Palchik O, Felner I, Kataby G, Gedanken A (2011) Amorphous iron oxide prepared by microwave
heating. J Mater Res 15(10):2176–2181. https ://doi.org/10.1557/JMR.2000.0313
173. Liu Z, Miao F, Hua W, Zhao F (2012) Fe 3 O 4 nanoparticles: microwave-assisted synthesis and
mechanism. Mater Lett 67(1):358–361. https ://doi.org/10.1016/j.matle t.2011.09.095
174. Kostyukhin EM, Kustov LM (2018) Microwave-assisted synthesis of magnetite nanoparticles possessing superior magnetic properties. Mendeleev Commun 28(5):559–561. https ://doi.
org/10.1016/j.menco m.2018.09.038
175. Bonfim L, de Queiroz Souza PP, de Oliveira Gonçalves K, Courrol LC, de Oliveira Silva FR,
Vieira DP (2019) Microwave-mediated synthesis of iron-oxide nanoparticles for use in magnetic
levitation cell cultures. Appl Nanosci 9(8):1707–1717. https ://doi.org/10.1007/s1320 4-019-00962
-1
176. Aivazoglou E, Metaxa E, Hristoforou E (2017) Microwave-assisted synthesis of iron oxide
nanoparticles in biocompatible organic environment. AIP Adv 8(4):048201. https ://doi.
org/10.1063/1.49940 57
177. Lastovina TA, Budnyk AP, Soldatov MA, Rusalev YV, Guda AA, Bogdan AS, Soldatov AV (2017)
Microwave-assisted synthesis of magnetic iron oxide nanoparticles in oleylamine–oleic acid solutions. Mendeleev Commun 27(5):487–489. https ://doi.org/10.1016/j.menco m.2017.09.019
178. Cao S-W, Zhu Y-J (2009) Iron oxide hollow spheres: microwave–hydrothermal ionic liquid preparation, formation mechanism, crystal phase and morphology control and properties. Acta Mater
57(7):2154–2165. https ://doi.org/10.1016/j.actam at.2009.01.009
179. Blanco-Andujar C, Ortega D, Southern P, Pankhurst QA, Thanh NTK (2015) High performance
multi-core iron oxide nanoparticles for magnetic hyperthermia: microwave synthesis, and the role
of core-to-core interactions. Nanoscale 7(5):1768–1775. https ://doi.org/10.1039/C4NR0 6239F
180. Jiang FY, Wang CM, Fu Y, Liu RC (2010) Synthesis of iron oxide nanocubes via microwaveassisted solvolthermal method. J Alloy Compd 503(2):L31–L33. https ://doi.org/10.1016/j.jallc
om.2010.05.020
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