Christopher E. Tabor

2009 Georgia Institute of Technology, Atlanta, GA 
"Christopher Tabor"
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Mostafa A. El-Sayed grad student 2009 Georgia Tech
 (Some optical and catalytic properties of metallic nanoparticles.)
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Butcher DP, Wadams RC, Drummy L, et al. (2016) Controlled dispersion of polystyrene-capped Au nanoparticles in P3HT:PC61BM and consequences upon active layer nanostructure Journal of Polymer Science, Part B: Polymer Physics. 54: 709-720
Cumby BL, Mast DB, Tabor CE, et al. (2015) Robust Pressure-Actuated Liquid Metal Devices Showing Reconfigurable Electromagnetic Effects at GHz Frequencies Ieee Transactions On Microwave Theory and Techniques
Alexander JA, Durstock MF, Tabor CE, et al. (2014) Investigation of the use of stereo-pair data sets in electron tomography characterization of organic-based solar cells Microscopy and Microanalysis. 20: 550-551
Scheltens FJ, Durstock MF, Tabor CE, et al. (2014) Monochromated electron energy-loss spectroscopy spectrum imaging of organic photovoltaic devices Microscopy and Microanalysis. 20: 400-401
Wadams RC, Yen CW, Butcher DP, et al. (2014) Gold nanorod enhanced organic photovoltaics: The importance of morphology effects Organic Electronics: Physics, Materials, Applications. 15: 1448-1457
Near R, Tabor C, Duan J, et al. (2012) Pronounced effects of anisotropy on plasmonic properties of nanorings fabricated by electron beam lithography. Nano Letters. 12: 2158-64
Rui G, Chen W, Abeysinghe DC, et al. (2012) Plasmonic antennas as building blocks for spin optics and quantum optics applications Proceedings of Spie - the International Society For Optical Engineering. 8461
Cumby BL, Hayes GJ, Dickey MD, et al. (2012) Reconfigurable liquid metal circuits by Laplace pressure shaping Applied Physics Letters. 101
Tabor C, Narayanan R, El-Sayed MA. (2010) Catalysis with transition metal nanoparticles in colloidal solution: Heterogeneous or homogeneous? Model Systems in Catalysis: Single Crystals to Supported Enzyme Mimics. 395-414
Tabor C, Van Haute D, El-Sayed MA. (2009) Effect of orientation on plasmonic coupling between gold nanorods. Acs Nano. 3: 3670-8
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