Kyle D. Osberg, Ph.D.

Affiliations: 
2012 Materials Science and Engineering Northwestern University, Evanston, IL 
Area:
Nanomaterials
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"Kyle Osberg"
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SNBCP

Parents

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Chad A. Mirkin grad student 2012 Northwestern
 (Plasmonic Nanostructures Synthesized by On-Wire Lithography: Smaller Sizes and New Materials and Applications.)
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Publications

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Osberg KD, Harris N, Ozel T, et al. (2014) Systematic study of antibonding modes in gold nanorod dimers and trimers. Nano Letters. 14: 6949-54
Mangelson BF, Park DJ, Ku JC, et al. (2013) Tunable and broadband plasmonic absorption via dispersible nanoantennas with sub-10 nm gaps. Small (Weinheim An Der Bergstrasse, Germany). 9: 2250-4
Schmucker AL, Barin G, Brown KA, et al. (2013) Electronic and optical vibrational spectroscopy of molecular transport junctions created by on-wire lithography. Small (Weinheim An Der Bergstrasse, Germany). 9: 1900-3
Osberg KD, Rycenga M, Bourret GR, et al. (2012) Dispersible surface-enhanced Raman scattering nanosheets. Advanced Materials (Deerfield Beach, Fla.). 24: 6065-70
Osberg KD, Rycenga M, Harris N, et al. (2012) Dispersible gold nanorod dimers with sub-5 nm gaps as local amplifiers for surface-enhanced Raman scattering. Nano Letters. 12: 3828-32
Auyeung E, Cutler JI, Macfarlane RJ, et al. (2012) Synthetically programmable nanoparticle superlattices using a hollow three-dimensional spacer approach. Nature Nanotechnology. 7: 24-8
wu J, Liu G, Auyeung E, et al. (2012) Electron tomography of DNA-linked nanoparticle superlattices Microscopy and Microanalysis. 18: 1646-1647
Jones MR, Osberg KD, Macfarlane RJ, et al. (2011) Templated techniques for the synthesis and assembly of plasmonic nanostructures. Chemical Reviews. 111: 3736-827
Osberg KD, Schmucker AL, Senesi AJ, et al. (2011) One-dimensional nanorod arrays: independent control of composition, length, and interparticle spacing with nanometer precision. Nano Letters. 11: 820-4
Schmucker AL, Harris N, Banholzer MJ, et al. (2011) Correction to Correlating Nanorod Structure with Experimentally Measured and Theoretically Predicted Surface Plasmon Resonance Acs Nano. 5: 7685-7685
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