Publications

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2010
Bardhan, R., N. K. Grady, T. Ali, and N. J. Halas, "Metallic nanoshells with semiconductor cores: optical characteristics modified by core medium properties", ACS nano, vol. 4, issue 10: ACS Publications, pp. 6169–6179, 2010. AbstractWebsite

It is well-known that the geometry of a nanoshell controls the resonance frequencies of its plasmon modes; however, the properties of the core material also strongly influence its optical properties. Here we report the synthesis of Au nanoshells with semiconductor cores of cuprous oxide and examine their optical characteristics. This material system allows us to systematically examine the role of core material on nanoshell optical properties, comparing Cu2O core nanoshells (εc 7) to lower core dielectric constant SiO2 core nanoshells (εc = 2) and higher dielectric constant mixed valency iron oxide nanoshells (εc = 12). Increasing the core dielectric constant increases nanoparticle absorption efficiency, reduces plasmon line width, and modifies plasmon energies. Modifying the core medium provides an additional means of tailoring both the near- and far-field optical properties in this unique nanoparticle system.

Bardhan, R., N. K. Grady, T. Ali, and N. J. Halas, "Metallic nanoshells with semiconductor cores: optical characteristics modified by core medium properties", ACS nano, vol. 4, no. 10: American Chemical Society, pp. 6169–6179, 2010. Abstract
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Bardhan, R., N. K. Grady, T. Ali, and N. J. Halas, "Metallic nanoshells with semiconductor cores: optical characteristics modified by core medium properties", ACS nano, vol. 4, no. 10: American Chemical Society, pp. 6169–6179, 2010. Abstract
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2009
Levin, C. S., C. Hofmann, T. A. Ali, A. T. Kelly, E. Morosan, P. Nordlander, K. H. Whitmire, and N. J. Halas, "Magnetic- Plasmonic Core- Shell Nanoparticles", Acs Nano, vol. 3, no. 6: ACS Publications, pp. 1379–1388, 2009. AbstractWebsite

Nanoparticles composed of magnetic cores with continuous Au shell layers simultaneously possess both magnetic and plasmonic properties. Faceted and tetracubic nanocrystals consisting of wüstite with magnetite-rich corners and edges retain magnetic properties when coated with a Au shell layer, with the composite nanostructures showing ferrimagnetic behavior. The plasmonic properties are profoundly influenced by the high dielectric constant of the mixed iron oxide nanocrystalline core. A comprehensive theoretical analysis that examines the geometric plasmon tunability over a range of core permittivities enables us to identify the dielectric properties of the mixed oxide magnetic core directly from the plasmonic behavior of the core−shell nanoparticle.

Levin, C. S., C. Hofmann, T. A. Ali, A. T. Kelly, E. Morosan, P. Nordlander, K. H. Whitmire, and N. J. Halas, "Magnetic- plasmonic core- shell nanoparticles", ACS nano, vol. 3, no. 6: American Chemical Society, pp. 1379–1388, 2009. Abstract
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Levin, C. S., C. Hofmann, T. A. Ali, A. T. Kelly, E. Morosan, P. Nordlander, K. H. Whitmire, and N. J. Halas, "Magnetic- plasmonic core- shell nanoparticles", ACS nano, vol. 3, no. 6: American Chemical Society, pp. 1379–1388, 2009. Abstract
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