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Marco Musiani

Researcher at Fiat Automobiles

Publications -  198
Citations -  8108

Marco Musiani is an academic researcher from Fiat Automobiles. The author has contributed to research in topics: Oxygen evolution & Electrode. The author has an hindex of 42, co-authored 181 publications receiving 6952 citations. Previous affiliations of Marco Musiani include University of Southampton & National Research Council.

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Determination of effective capacitance and film thickness from constant-phase-element parameters

TL;DR: Two different mathematical formulas for estimating effective capacitance from CPE parameters, taken from the literature, are associated unambiguously with either surface or normal time-constant distributions as mentioned in this paper.
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Constant-Phase-Element Behavior Caused by Resistivity Distributions in Films I. Theory

TL;DR: Hirschorn et al. as mentioned in this paper proposed a method to solve the problem of chemical engineering by using the theory of theory of I.I. Theory Bryan Hirschorn,* Mark E. Orazem,** Bernard Tribollet,** Vincent Vivier,** Isabelle Frateur, and Marco Musiani.
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Dielectric Properties of Materials Showing Constant-Phase-Element (CPE) Impedance Response

TL;DR: In this paper, four approaches were used to interpret CPE parameters associated with the impedance response of human skin and two metal oxides in terms of characteristic frequencies and film thickness, and the values obtained with each approach were compared against independent measurements.
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Constant-Phase-Element Behavior Caused by Resistivity Distributions in Films II. Applications

TL;DR: Hirschorn et al. as mentioned in this paper proposed a method to detect the presence of interference in the process of chemical engineering applications by using the Hirschorn-Orazem algorithm.
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Electrochemical behaviour of copper in neutral aerated chloride solution. I. Steady-state investigation

TL;DR: In this article, the electrochemical behavior of a rotating disc electrode in neutral aerated NaCl solution was investigated in the cathodic and anodic ranges and at the corrosion potential.