JOURNAL ARTICLE

Monodispersed Core−Shell Fe3O4@Au Nanoparticles

WangJin LuoQuan FanMasatsugu SuzukiItsuko S. SuzukiMark EngelhardYuehe LinNam Soo KimJian Q. WangChuan‐Jian Zhong

Year: 2005 Journal:   The Journal of Physical Chemistry B Vol: 109 (46)Pages: 21593-21601   Publisher: American Chemical Society

Abstract

The ability to synthesize and assemble monodispersed core-shell nanoparticles is important for exploring the unique properties of nanoscale core, shell, or their combinations in technological applications. This paper describes findings of an investigation of the synthesis and assembly of core (Fe(3)O(4))-shell (Au) nanoparticles with high monodispersity. Fe(3)O(4) nanoparticles of selected sizes were used as seeding materials for the reduction of gold precursors to produce gold-coated Fe(3)O(4) nanoparticles (Fe(3)O(4)@Au). Experimental data from both physical and chemical determinations of the changes in particle size, surface plasmon resonance optical band, core-shell composition, surface reactivity, and magnetic properties have confirmed the formation of the core-shell nanostructure. The interfacial reactivity of a combination of ligand-exchanging and interparticle cross-linking was exploited for molecularly mediated thin film assembly of the core-shell nanoparticles. The SQUID data reveal a decrease in magnetization and blocking temperature and an increase in coercivity for Fe(3)O(4)@Au, reflecting the decreased coupling of the magnetic moments as a result of the increased interparticle spacing by both gold and capping shells. Implications of the findings to the design of interfacial reactivities via core-shell nanocomposites for magnetic, catalytic, and biological applications are also briefly discussed.

Keywords:
Nanoparticle Materials science Nanostructure Surface plasmon resonance Nanotechnology Shell (structure) Reactivity (psychology) Colloidal gold Coercivity Nanocomposite Magnetization Chemical engineering Nanoscopic scale Particle (ecology) Composite material Condensed matter physics

Metrics

571
Cited By
16.09
FWCI (Field Weighted Citation Impact)
36
Refs
0.99
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Iron oxide chemistry and applications
Physical Sciences →  Energy →  Renewable Energy, Sustainability and the Environment
Nanomaterials for catalytic reactions
Physical Sciences →  Chemistry →  Organic Chemistry
Nanoparticle-Based Drug Delivery
Physical Sciences →  Materials Science →  Biomaterials

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