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Eric D Smolensky

Explore the profile of Eric D Smolensky including associated specialties, affiliations and a list of published articles. Areas
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Articles 7
Citations 115
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Recent Articles
1.
Smolensky E, Park H, Zhou Y, Rolla G, Marjanska M, Botta M, et al.
J Mater Chem B . 2013 Jul; 1(22):2818-2828. PMID: 23819021
The magnetic properties of iron oxide nanoparticles govern their relaxivities and efficacy as contrast agents for MRI. These properties are in turn determined by their composition, size and morphology. Herein...
2.
Weitz E, Lewandowski C, Smolensky E, Marjanska M, Pierre V
ACS Nano . 2013 Jun; 7(7):5842-9. PMID: 23746216
We present the design and synthesis of a responsive magnetoplasmonic assembly for copper(I) which allows monitoring of the concentration of the metal both in three dimensions by magnetic resonance imaging...
3.
Smolensky E, Peterson K, Weitz E, Lewandowski C, Pierre V
J Am Chem Soc . 2013 May; 135(24):8966-72. PMID: 23692333
The synthesis and properties of two responsive magnetoluminescent iron oxide nanoparticles for dual detection of DNA by MRI and luminescence spectroscopy are presented. These magnetoluminescent agents consist of iron oxide...
4.
Smolensky E, Marjanska M, Pierre V
Dalton Trans . 2012 May; 41(26):8039-46. PMID: 22585342
A responsive MION-based MRI contrast agent for the detection of copper(I) is presented. Induced agglomeration of azide and acetylene-functionalized magnetite nanoparticles via Cu(I)-catalysed Huisgen cycloaddition leads to significant decrease in...
5.
Smolensky E, Park H, Berquo T, Pierre V
Contrast Media Mol Imaging . 2011 Aug; 6(4):189-99. PMID: 21861279
Hydrophobic magnetite nanoparticles synthesized from thermal decomposition of iron salts must be rendered hydrophilic for their application as MRI contrast agents. This process requires refunctionalizing the surface of the nanoparticles...
6.
Smolensky E, Neary M, Zhou Y, Berquo T, Pierre V
Chem Commun (Camb) . 2010 Dec; 47(7):2149-51. PMID: 21165501
The synthesis and characterization of core-shell Fe(3)O(4)@organic@Au nanoparticles displaying plasmonic behavior, high magnetism, and high relaxivity is presented. The incorporation of a thin organic layer between the two metals is...
7.