Thomas M. Arruda, Ph.D.

Affiliations: 
2010 Chemistry Northeastern University, Boston, MA, United States 
Area:
Physical Chemistry
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"Thomas Arruda"
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Sanjeev Mukerjee grad student 2010 Northeastern University
 (X-ray absorption spectroscopy investigations into the stability and activity of fuel cell electrocatalysts.)
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Publications

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Lawton J, Tiano S, Donnelly D, et al. (2018) The Effect of Sulfuric Acid Concentration on the Physical and Electrochemical Properties of Vanadyl Solutions Batteries. 4: 40
Papandrew AB, John SS, Elgammal RA, et al. (2016) Vapor-deposited Pt and Pd-Pt catalysts for solid acid fuel cells: Short range structure and interactions with the CsH2PO4 electrolyte Journal of the Electrochemical Society. 163: F464-F469
Farrow T, Yang N, Doria S, et al. (2015) Sub-nA spatially resolved conductivity profiling of surface and interface defects in ceria films Apl Materials. 3
Martin D, Müller J, Schenk T, et al. (2014) Ferroelectricity in Si-doped HfO2 revealed: a binary lead-free ferroelectric. Advanced Materials (Deerfield Beach, Fla.). 26: 8198-202
Yang N, Doria S, Kumar A, et al. (2014) Water-mediated electrochemical nano-writing on thin ceria films. Nanotechnology. 25: 075701
Mukerjee S, Ziegelbauer J, Arruda TM, et al. (2014) In Situ X-Ray Spectroscopy of Enzymatic Catalysis: Laccase-Catalyzed Oxygen Reduction Enzymatic Fuel Cells: From Fundamentals to Applications. 304-336
Kumar A, Chen C, Arruda TM, et al. (2013) Frequency spectroscopy of irreversible electrochemical nucleation kinetics on the nanoscale. Nanoscale. 5: 11964-70
Dubourdieu C, Bruley J, Arruda TM, et al. (2013) Switching of ferroelectric polarization in epitaxial BaTiO₃ films on silicon without a conducting bottom electrode. Nature Nanotechnology. 8: 748-54
Arruda TM, Kumar A, Jesse S, et al. (2013) Toward quantitative electrochemical measurements on the nanoscale by scanning probe microscopy: Environmental and current spreading effects Acs Nano. 7: 8175-8182
Kumar A, Arruda TM, Tselev A, et al. (2013) Nanometer-scale mapping of irreversible electrochemical nucleation processes on solid Li-ion electrolytes. Scientific Reports. 3: 1621
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