Anne A. Lazarides

Affiliations: 
Mechanical Engineering and Materials Science Duke University, Durham, NC 
Area:
Materials Science Engineering
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"Anne Lazarides"

Parents

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Chad A. Mirkin post-doc 2000-2002 Northwestern (Chemistry Tree)

Children

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Molly M. Miller grad student 2007 Duke
David S. Sebba grad student 2008 Duke
Elizabeth R. Irish Nelson grad student 2009 Duke
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Publications

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Yi C, Kim TH, Jiao W, et al. (2012) Evidence of plasmonic coupling in gallium nanoparticles/graphene/SiC. Small (Weinheim An Der Bergstrasse, Germany). 8: 2721-30
Chen SY, Urzhumov Y, Smith DR, et al. (2012) Characterization of high order modes of plasmonic antenna formed by nanoparticle/thin film hybrid structures Proceedings of Spie. 8269
Mock JJ, Norton SM, Chen SY, et al. (2011) Electromagnetic Enhancement Effect Caused by Aggregation on SERS-Active Gold Nanoparticles Plasmonics. 6: 113-124
Chen SY, Mock JJ, Hill RT, et al. (2010) Gold nanoparticles on polarizable surfaces as raman scattering antennas Acs Nano. 4: 6535-6546
Hill RT, Mock JJ, Urzhumov Y, et al. (2010) Leveraging nanoscale plasmonic modes to achieve reproducible enhancement of light. Nano Letters. 10: 4150-4
Chen S, Lazarides AA. (2009) Quantitative amplification of surface enhanced Raman scattering through plasmonic coupling in controlled nanoparticle assemblies Proceedings of Spie. 7395
Chen S, Lazarides AA. (2009) Quantitative Amplification of Cy5 SERS in ‘Warm Spots’ Created by Plasmonic Coupling in Nanoparticle Assemblies of Controlled Structure The Journal of Physical Chemistry C. 113: 12167-12175
Sebba DS, Mock JJ, Smith DR, et al. (2008) Reconfigurable core-satellite nanoassemblies as molecularly-driven plasmonic switches. Nano Letters. 8: 1803-8
Coskun UC, Mebrahtu H, Huang PB, et al. (2008) Single-electron transistors made by chemical patterning of silicon dioxide substrates and selective deposition of gold nanoparticles Applied Physics Letters. 93
Erb RM, Sebba DS, Lazarides AA, et al. (2008) Magnetic field induced concentration gradients in magnetic nanoparticle suspensions: Theory and experiment Journal of Applied Physics. 103
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