Theory of Circular Dichroism of Nanomaterials Comprising Chiral Molecules and Nanocrystals: Plasmon Enhancement, Dipole Interactions, and Dielectric Effects

573 indexed citations
published 2010

Countries where authors are citing Theory of Circular Dichroism of Nanomaterials Comprising Chiral Molecules and Nanocrystals: Plasmon Enhancement, Dipole Interactions, and Dielectric Effects

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Fields of papers citing Theory of Circular Dichroism of Nanomaterials Comprising Chiral Molecules and Nanocrystals: Plasmon Enhancement, Dipole Interactions, and Dielectric Effects

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Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of Theory of Circular Dichroism of Nanomaterials Comprising Chiral Molecules and Nanocrystals: Plasmon Enhancement, Dipole Interactions, and Dielectric Effects. Nodes represent research fields, and links connect fields that are likely to share authors. Colored nodes show fields that tend to cite the Theory of Circular Dichroism of Nanomaterials Comprising Chiral Molecules and Nanocrystals: Plasmon Enhancement, Dipole Interactions, and Dielectric Effects.

About Theory of Circular Dichroism of Nanomaterials Comprising Chiral Molecules and Nanocrystals: Plasmon Enhancement, Dipole Interactions, and Dielectric Effects

This paper, published in 2010, received 573 indexed citations . Written by Alexander O. Govorov, Zhiyuan Fan, Pedro Hernández, Joseph M. Slocik and Rajesh R. Naik covering the research area of Electronic, Optical and Magnetic Materials, Materials Chemistry and Biomedical Engineering. It is primarily cited by scholars working on Electronic, Optical and Magnetic Materials (388 citations), Biomedical Engineering (280 citations) and Materials Chemistry (186 citations). Published in Nano Letters.

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This paper is also available at doi.org/10.1021/nl100010v.

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