Prabhuram Joghee
Colorado School of Mines
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Publication
Featured researches published by Prabhuram Joghee.
Chemsuschem | 2014
Prabhuram Joghee; Svitlana Pylypenko; Kevin N. Wood; Guido Bender; Ryan O'Hayre
A commercial PtRu/C catalyst postdoped with nitrogen demonstrates a significantly higher performance (~10-20% improvement) in the anode of an alkaline direct methanol fuel cell than an unmodified commercial PtRu/C catalyst control. The enhanced performance shown herein is attributed at least partially to the increased electrochemical surface area of the PtRu/C after postdoping with nitrogen.
Proceedings of SPIE | 2015
Richard M. Osgood; Stephen Giardini; Joel Carlson; Prabhuram Joghee; Ryan O'Hayre; Kenneth Diest; Mordechai Rothschild
Unlike a semiconductor, where the absorption is limited by the band gap, a “microrectenna array” could theoretically very efficiently rectify any desired portion of the infrared frequency spectrum (25 - 400 THz). We investigated vertical metal-insulator-metal (MIM) diodes that rectify vertical high-frequency fields produced by a metamaterial planar stripe-teeth Al or Au array (above the diodes), similar to stripe arrays that have demonstrated near-perfect absorption in the infrared due to critical coupling [1]. Using our design rules that maximize asymmetry (and therefore the component of the electric field pointed into the substrate, analogous to Second Harmonic Generation), we designed, fabricated, and analyzed these metamaterial-based microrectenna arrays. NbOx and Al2O3 were produced by anodization and ALD, respectively. Smaller visible-light Pt-NbOx-Nb rectennas have produced output power when illuminated by visible (514 nm) light [2]. The resonances of these new Au/NbOx/Nb and Al/Al2O3/Al microrectenna arrays, with larger dimensions and more complex nanostructures than in Ref. 1, were characterized by microscopic FTIR microscopy and agreed well with FDTD models, once the experimental refractive index values were entered into the model. Current-voltage measurements were carried out, showed that the Al/Al2O3/Al diodes have very large barrier heights and breakdown voltages, and were compared to our model of the MIM diode. We calculate expected THz-rectification using classical [3] and quantum [4] rectification models, and compare to measurements of direct current output, under infrared illumination. [1] C. Wu, et. al., Phys. Rev. B 84 (2011) 075102. [2] R. M. Osgood III, et. al., Proc. SPIE 8096, 809610 (2011). [3] A. Sanchez, et. al., J. Appl. Phys. 49 (1978) 5270. [4] J. R. Tucker and M. J. Feldman, Rev. of Mod. Phys. 57, (1985)1055.
Journal of Power Sources | 2012
April Corpuz; Tim S. Olson; Prabhuram Joghee; Svitlana Pylypenko; Arrelaine Dameron; Huyen N. Dinh; Kevin O'Neill; Guido Bender; Thomas Gennett; Bryan S. Pivovar; Ryan M. Richards; Ryan O'Hayre
Journal of The Electrochemical Society | 2012
Prabhuram Joghee; Svitlana Pylypenko; Tim S. Olson; Arrelaine Dameron; April Corpuz; Huyen N. Dinh; Kevin N. Wood; Kevin O’Neill; Guido Bender; Thomas Gennett; Bryan S. Pivovar; Ryan O’Hayre
MRS Energy & Sustainability | 2015
Prabhuram Joghee; Jennifer Nekuda Malik; Svitlana Pylypenko; Ryan O’Hayre
Journal of Power Sources | 2014
Prabhuram Joghee; Svitlana Pylypenko; Kevin N. Wood; April Corpuz; Guido Bender; Huyen N. Dinh; Ryan O'Hayre
Journal of Power Sources | 2014
April Corpuz; Kevin N. Wood; Svitlana Pylypenko; Arrelaine Dameron; Prabhuram Joghee; Tim S. Olson; Guido Bender; Huyen N. Dinh; Thomas Gennett; Ryan M. Richards; Ryan O'Hayre
Journal of Power Sources | 2018
Michael J. Dzara; Jason M. Christ; Prabhuram Joghee; Chilan Ngo; Christopher A. Cadigan; Guido Bender; Ryan M. Richards; Ryan O'Hayre; Svitlana Pylypenko
Journal of The Electrochemical Society | 2015
Kevin N. Wood; Arrelaine Dameron; Prabhuram Joghee; Guido Bender; Ryan O'Hayre; Svitlana Pylypenko
225th ECS Meeting (May 11-15, 2014) | 2014
Prabhuram Joghee; Svitlana Pylypenko; Kevin N. Wood; Guido Bender; Ryan O'Hayre