Kaylie L. Young, Ph.D.

Affiliations: 
2013 Chemistry Northwestern University, Evanston, IL 
Area:
Nanomaterials
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"Kaylie Young"
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Chad A. Mirkin grad student 2013 Northwestern
 (Synthesis of Plasmonic Nanoparticle Superlattices Using DNA-Mediated Assembly and Directional Entropic Forces.)
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Publications

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Cheng HW, Schadt MJ, Young K, et al. (2015) Determination of ion pairing on capping structures of gold nanoparticles by phase extraction. The Analyst. 140: 6239-44
Senesi AJ, Eichelsdoerfer DJ, Brown KA, et al. (2014) Oligonucleotide flexibility dictates crystal quality in DNA-programmable nanoparticle superlattices. Advanced Materials (Deerfield Beach, Fla.). 26: 7235-40
Young KL, Ross MB, Blaber MG, et al. (2014) Using DNA to design plasmonic metamaterials with tunable optical properties. Advanced Materials (Deerfield Beach, Fla.). 26: 653-9
Young KL, Personick ML, Engel M, et al. (2013) A directional entropic force approach to assemble anisotropic nanoparticles into superlattices. Angewandte Chemie (International Ed. in English). 52: 13980-4
Walter SR, Young KL, Holland JG, et al. (2013) Counting the number of magnesium ions bound to the surface-immobilized thymine oligonucleotides that comprise spherical nucleic acids. Journal of the American Chemical Society. 135: 17339-48
Liu G, Young KL, Liao X, et al. (2013) Anisotropic nanoparticles as shape-directing catalysts for the chemical etching of silicon. Journal of the American Chemical Society. 135: 12196-9
Zhang C, Macfarlane RJ, Young KL, et al. (2013) A general approach to DNA-programmable atom equivalents. Nature Materials. 12: 741-6
Liu G, Young KL, Liao X, et al. (2013) Anisotropic nanoparticles as shape-directing catalysts for the chemical etching of silicon Journal of the American Chemical Society. 135: 12196-12199
Young KL, Scott AW, Hao L, et al. (2012) Hollow spherical nucleic acids for intracellular gene regulation based upon biocompatible silica shells. Nano Letters. 12: 3867-71
Young KL, Jones MR, Zhang J, et al. (2012) Assembly of reconfigurable one-dimensional colloidal superlattices due to a synergy of fundamental nanoscale forces. Proceedings of the National Academy of Sciences of the United States of America. 109: 2240-5
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