Aswin K. Manohar, Ph.D.

Affiliations: 
2010 Materials Science University of Southern California, Los Angeles, CA, United States 
Area:
Materials Science Engineering
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"Aswin Manohar"

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Florian Mansfeld grad student 2010 USC
 (Applications of advanced electrochemical techniques in the study of microbial fuel cells and corrosion protection by polymer coatings.)
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Publications

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Yang C, Manohar AK, Narayanan SR. (2017) A High-Performance Sintered Iron Electrode for Rechargeable Alkaline Batteries to Enable Large-Scale Energy Storage Journal of the Electrochemical Society. 164: A418-A429
Manohar AK, Kim KM, Plichta E, et al. (2016) A high efficiency iron-chloride redox flow battery for large-scale energy storage Journal of the Electrochemical Society. 163: A5118-A5125
Narayan SR, Manohar AK, Mukerjee S. (2015) Bi-functional oxygen electrodes challenges and prospects Electrochemical Society Interface. 24: 65-69
Manohar AK, Yang C, Narayanan SR. (2015) The role of sulfide additives in achieving long cycle life rechargeable iron electrodes in alkaline batteries Journal of the Electrochemical Society. 162: A1864-A1872
Malkhandi S, Trinh P, Manohar AK, et al. (2015) Design insights for tuning the electrocatalytic activity of perovskite oxides for the oxygen evolution reaction Journal of Physical Chemistry C. 119: 8004-8013
Yang B, Malkhandi S, Manohar AK, et al. (2014) Organo-sulfur molecules enable iron-based battery electrodes to meet the challenges of large-scale electrical energy storage Energy and Environmental Science. 7: 2753-2763
Manohar AK, Narayanan SR. (2014) Efficient Generation of Electricity from Methane using High Temperature Fuel Cells - Status, Challenges and Prospects Israel Journal of Chemistry. 54: 1443-1450
Malkhandi S, Yang B, Manohar AK, et al. (2013) Self-assembled monolayers of n-alkanethiols suppress hydrogen evolution and increase the efficiency of rechargeable iron battery electrodes. Journal of the American Chemical Society. 135: 347-53
Malkhandi S, Trinh P, Manohar AK, et al. (2013) Electrocatalytic activity of transition metal oxide-carbon composites for oxygen reduction in alkaline batteries and fuel cells Journal of the Electrochemical Society. 160: F943-F952
Malkhandi S, Trinh P, Manohar AK, et al. (2013) Erratum: Electrocatalytic Activity of Transition Metal Oxide-Carbon Composites for Oxygen Reduction in Alkaline Batteries and Fuel Cells [J. Electrochem. Soc., 160, F943 (2013)] Journal of the Electrochemical Society. 160: X11-X11
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