His primary areas of investigation include Corrosion, Metallurgy, Polarization, Electrical impedance and Anode. His Corrosion research includes themes of Dielectric spectroscopy, Electrochemistry, Tafel equation and Cathodic protection. His research integrates issues of Aeration and Capacitance in his study of Dielectric spectroscopy.
When carried out as part of a general Metallurgy research project, his work on Aluminium, Anodizing and Aluminium alloy is frequently linked to work in Artificial seawater, therefore connecting diverse disciplines of study. The study incorporates disciplines such as Electrochemical noise, Equivalent circuit and Analytical chemistry in addition to Polarization. His Electrical impedance study integrates concerns from other disciplines, such as Platinum, Pitting corrosion, Polymer coating, Coating and Manganese.
Florian Mansfeld mainly focuses on Corrosion, Metallurgy, Dielectric spectroscopy, Analytical chemistry and Polarization. Florian Mansfeld has included themes like Anodizing, Biofilm, Copper, Electrical impedance and Electrochemistry in his Corrosion study. His studies deal with areas such as Composite material and Anode as well as Metallurgy.
His Dielectric spectroscopy research integrates issues from Pitting corrosion, Conversion coating and Scanning electron microscope. The various areas that Florian Mansfeld examines in his Analytical chemistry study include Electrochemical noise and Electrode. His Polarization study frequently links to adjacent areas such as Tafel equation.
Florian Mansfeld mostly deals with Corrosion, Microbial fuel cell, Dielectric spectroscopy, Metallurgy and Analytical chemistry. The Corrosion study combines topics in areas such as Polarization, Corrosion potential, Tafel equation and Phosphate. Florian Mansfeld combines subjects such as Inorganic chemistry, Shewanella and Environmental chemistry with his study of Microbial fuel cell.
His biological study spans a wide range of topics, including Silane, Scanning electron microscope, Sol-gel, Gel permeation chromatography and Cyclic voltammetry. His research in the fields of Aluminium overlaps with other disciplines such as Artificial seawater. His work carried out in the field of Analytical chemistry brings together such families of science as Electrical impedance, Platinum and Electrochemistry, Electrode.
Florian Mansfeld focuses on Microbial fuel cell, Dielectric spectroscopy, Anode, Corrosion and Metallurgy. His Dielectric spectroscopy research is multidisciplinary, relying on both Cathode, Cyclic voltammetry, Scanning electron microscope and Analytical chemistry. He has researched Cathode in several fields, including Electrochemistry and Electrode.
His Anode study deals with Polarization intersecting with Ohmic contact. His work in Corrosion addresses subjects such as Tafel equation, which are connected to disciplines such as Galvanization, Conversion coating, Polarization and Electrical impedance. His research on Metallurgy often connects related topics like Biofilm.
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Technical Note: Concerning the Conversion of the Constant Phase Element Parameter Y0 into a Capacitance
C. H. Hsu;F. Mansfeld.
Use of electrochemical impedance spectroscopy for the study of corrosion protection by polymer coatings
Journal of Applied Electrochemistry (1995)
Determination of corrosion rates by electrochemical DC and AC methods
W.J. Lorenz;F. Mansfeld.
Corrosion Science (1981)
Exploring the use of electrochemical impedance spectroscopy (EIS) in microbial fuel cell studies
Zhen He;Florian Mansfeld.
Energy and Environmental Science (2009)
The corrosion protection afforded by rare earth conversion coatings applied to magnesium
Amy L. Rudd;Carmel B. Breslin;Florian Mansfeld.
Corrosion Science (2000)
Current Production and Metal Oxide Reduction by Shewanella oneidensis MR-1 Wild Type and Mutants
Orianna Bretschger;Anna Obraztsova;Carter A. Sturm;In Seop Chang;In Seop Chang.
Applied and Environmental Microbiology (2007)
Recording and Analysis of AC Impedance Data for Corrosion Studies
F. Mansfeld;M. W. Kendig;S. Tsai.
Electrochemical impedance spectroscopy (EIS) as a new tool for investigating methods of corrosion protection
Electrochimica Acta (1990)
Evaluation of Corrosion Behavior of Coated Metals with AC Impedance Measurements
F. Mansfeld;M. W. Kendig;S. Tsai.
Effect of electrolyte pH on the rate of the anodic and cathodic reactions in an air-cathode microbial fuel cell
Zhen He;Yuelong Huang;Aswin K. Manohar;Florian Mansfeld.
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