Magnetic Nanocapsules
8/28/2008
“Magnetic
nanoparticles are a class of nanoparticle which can be manipulated under the
influence of a magnetic field. Such particles commonly consist of magnetic
elements such as iron, nickel and cobalt and their chemical compounds. These
particles have been the focus of much research recently because they possess
attractive properties which could see potential use in catalysis, biomedicine,
magnetic resonance imaging, data storage and environmental remediation.”
Wikipedia:
http://en.wikipedia.org/wiki/Magnetic_nanoparticles (11/14/2008)
Warning: Sometimes the older links no longer work. Go to the US Patent Patent number search page, copy the Patent number into the search box and search. For the articles, use your browser to go the Journal site.
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Notes
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Review Articles
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US Patents
9/30/2008
7,429,339
Magnetic nanomaterials and synthesis method
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Articles
2/20/2009
Carbon-encapsulated magnetic nanoparticles as separable and mobile sorbents
of heavy metal ions from aqueous solutions
(1201-1204)
Carbon 47 #4 (2009)
Fabrication and Dispersion of Gold-Shell-Protected Magnetite Nanoparticles:
Systematic Control Using Polyethyleneimine
(673–681)
Chemistry of Materials 21 #4 (2009)
Elaboration of hydrophilic aminodextran containing submicron magnetic latex
particles
(287-297)
Colloid and Polymer Science 287 #3 (2009)
2/13/209
Magnetic γ-Fe2O3 nanoparticles coated with poly-l-cysteine
for chelation of As(III), Cu(II), Cd(II), Ni(II), Pb(II) and Zn(II)
(848-853)
Journal of Hazardous Materials 161 #2-3 (2009)
2/6/2009
Dexamethasone-containing PLGA superparamagnetic microparticles as carriers
for the local treatment of arthritis
(1772-1780)
Biomaterials 30 #9 (2009)
1/23/2009
Double-miniemulsion preparation of Fe3O4/poly(methyl
methacrylate) magnetic latex
(p 89-98)
Journal of Applied Polymer Science 112 #1 (2009)
Abstract
Pluronic/chitosan shell cross-linked nanocapsules encapsulating magnetic
nanoparticles
(1571-1583)
Journal of Biomaterials Science. Polymer Edition 19 #12 (2008)
Colloidal dispersions of monodisperse magnetite nanoparticles modified with
poly(ethylene glycol)
(107-113)
Journal of Colloid and Interface Science 329 #1 (2009)
Development of Fe3O4-poly(l-lactide) magnetic
microparticles in supercritical CO2
(317-322)
Journal of Colloid and Interface Science 330 #2 (2009)
11/21/2008
Asymmetric bifunctional primary aminocatalysis on magnetic nanoparticles
(5719 - 5721)
Chemical Communications #44 (2008)
11/7/2008
Effective surface modification by stimuli-responsive polymers onto the
magnetite nanoparticles by layer-by-layer method
(384-387)
Applied Surface Science 255 #2 (2008)
10/31/1008
One step grafting of monomethoxy poly(ethylene glycol) during synthesis of
maghemite nanoparticles in aqueous medium
(1-7)
Colloids and Surfaces A: Physicochemical and Engineering Aspects 330 #1 (2008)
10/3/2008
PEO coated magnetic nanoparticles for biomedical application
(3191-3199)
European Polymer Journal 44 #10 (2008)
9/26/2008
A novel method to prepare water-dispersible magnetic
nanoparticles and their biomedical applications: Magnetic capture probe and
specific cellular uptake
(p 364-372)
Journal of Biomedical Materials Research 87A #2 (2008)
Abstract
Magnetic nanoparticles for improving cell invasion in tissue
engineering
(p 969-978) Journal
of Biomedical Materials Research 86A #4 (2008)
Abstract
9/19/2008
Suzuki cross-coupling reactions on the surface of carbon-coated cobalt:
expanding the applicability of core–shell nano-magnets
(4297 – 4299)
Chemical Communications #36 (2008)
9/12/2008
Lipase Immobilization on Oleic Acid−Pluronic (L-64)
Block Copolymer Coated Magnetic Nanoparticles, for Hydrolysis at the Oil/Water
Interface
(6379 – 6385)
Industrial & Engineering Chemistry Research 47 #17 (2008)
Abstract
8/22/2008
Synthesis of carbon-encapsulated magnetic nanoparticles by pulsed laser
irradiation of solution
(1369-1377)
Carbon 46 #11 (2008)
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Roger D. Corneliussen
Editor
Telephone: 610 883 0055
rcorneliussen@4spe.org
www.maropolymeronline.com
Copyright 2008 by Roger D. Corneliussen