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107. Carmen Bautista M, Bomati-Miguel O, del Puerto Morales M et al. Surface characterisation
of dextran-coated iron oxide nanoparticles prepared by laser pyrolysis and coprecipitation.
Journal of Magnetism and Magnetic Materials , 2005, 293(1): 20-27.
108. Shultz M D, Calvin S, Fatouros P P et al. Enhanced ferrite nanoparticles as MRI contrast agents.
Journal of Magnetism and Magnetic Materials , 2007, 311(1): 464-468.
109. Kohler N, Fryxell G E, Zhang M. A bifunctional poly (ethylene glycol) silane immobilized on
metallic oxide-based nanoparticles for conjugation with cell targeting agents. Journal of the
American Chemical Society , 2004, 126(23): 7206-7211.
110. Schellenberger E A, Bogdanov Jr A, Högemann D et al. Annexin V-CLIO: A nanoparticle for
detecting apoptosis by MRI. Molecular Imaging , 2002, 1(2): 102.
111. Sairam M, Naidu B V K, Nataraj S K et al. Poly (vinyl alcohol)-iron oxide nanocomposite mem-
branes for pervaporation dehydration of isopropanol, 1, 4-dioxane and tetrahydrofuran. Journal
of Membrane Science , 2006, 283(1): 65-73.
112. Neuberger T, Schöpf B, Hofmann H et al. Superparamagnetic nanoparticles for biomedical
applications: Possibilities and limitations of a new drug delivery system. Journal of Magnetism
and Magnetic Materials , 2005, 293(1): 483-496.
113. Lee J, Isobe T, Senna M. Preparation of ultraine Fe 3 O 4 particles by precipitation in the presence
of PVA at high pH. Journal of Colloid and Interface Science , 1996, 177(2): 490-494.
114. Osada Y, Gong J P. Soft and wet materials: Polymer gels. Advanced Materials , 1998, 10(11):
827-837.
115. Albornoz C, Jacobo S E. Preparation of a biocompatible magnetic ilm from an aqueous ferro-
luid. Journal of Magnetism And Magnetic Materials , 2006, 305(1): 12-15.
116. Nishio Y, Yamada A, Ezaki K et al. Preparation and magnetometric characterization of iron
oxide-containing alginate/poly (vinyl alcohol) networks. Polymer , 2004, 45(21): 7129-7136.
117. Zhi J, Wang Y, Lu Y et al. In situ preparation of magnetic chitosan/Fe 3 O 4 composite nanopar-
ticles in tiny pools of water-in-oil microemulsion. Reactive and Functional Polymers , 2006, 66(12):
1552-1558.
118. Hee Kim E, Sook Lee H, Kook Kwak B et al. Synthesis of ferroluid with magnetic nanoparticles
by sonochemical method for MRI contrast agent. Journal of Magnetism and Magnetic Materials ,
2005, 289: 328-330.
119. Lee H S, Hee Kim E, Shao H et al. Synthesis of SPIO-chitosan microspheres for MRI-detectable
embolotherapy. Journal of Magnetism and Magnetic Materials , 2005, 293(1): 102-105.
120. Moeser G D, Green W H, Laibinis P E et al. Structure of polymer-stabilized magnetic luids: Small-
angle neutron scattering and mean-ield lattice modeling. Langmuir , 2004, 20(13): 5223-5234.
121. Sun S, Anders S, Hamann H F et al. Polymer mediated self-assembly of magnetic nanoparticles.
Journal of the American Chemical Society , 2002, 124(12): 2884-2885.
122. Underhill R S, Liu G. Triblock nanospheres and their use as templates for inorganic nanopar-
ticle preparation. Chemistry of Materials , 2000, 12(8): 2082-2091.
123. Zhang J, Xu S, Kumacheva E. Polymer microgels: Reactors for semiconductor, metal, and mag-
netic nanoparticles. Journal of the American Chemical Society , 2004, 126(25): 7908-7914.
124. Breulmann M, Cölfen H, Hentze H P et al. Elastic magnets: Template—controlled mineraliza-
tion of iron oxide colloids in a sponge—like gel matrix. Advanced Materials , 1998, 10(3): 237-241.
125. Sun Y, Ding X, Zheng Z et al. Surface initiated ATRP in the synthesis of iron oxide/polystyrene
core/shell nanoparticles. European Polymer Journal , 2007, 43(3): 762-772.
126. Pich A, Bhattacharya S, Ghosh A et al. Composite magnetic particles: 2. Encapsulation of iron
oxide by surfactant-free emulsion polymerization. Polymer , 2005, 46(13): 4596-4603.
127. Shi S, Fan Y, Huang Y. Facile low temperature hydrothermal synthesis of magnetic mesopo-
rous carbon nanocomposite for adsorption removal of ciproloxacin antibiotics. Industrial &
Engineering Chemistry Research , 2013, 52(7): 2604-2612.
128. Yu F, Chen J, Chen L et al. Magnetic carbon nanotubes synthesis by Fenton's reagent method
and their potential application for removal of azo dye from aqueous solution. Journal of Colloid
and Interface Science , 2012, 378(1): 175-183.
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