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François Huet

François Huet

D-Index & Metrics

Engineering and Technology

D-Index
40
Citations
7621
World Ranking
7235
National Ranking
154

Overview

François Huet is affiliated with Sorbonne University in France. Their research primarily spans the fields of Materials Science and Engineering, with specific subfields in Metals and Alloys, Materials Chemistry, Electrochemistry, Civil and Structural Engineering, and Polymers and Plastics.

The main topics of François Huet's work include:

  • Hydrogen embrittlement and corrosion behaviors in metals
  • Corrosion Behavior and Inhibition
  • Electrochemical Analysis and Applications
  • Concrete Corrosion and Durability
  • Conducting polymers and applications
  • Molecular Junctions and Nanostructures
  • Material Properties and Failure Mechanisms

Their recent publications encompass studies in corrosion science and electrochemical methods, including:

  • Review-Electrochemical Noise Applied in Corrosion Science: Theoretical and Mathematical Models towards Quantitative Analysis, 2020, Journal of The Electrochemical Society
  • Corrosion propagation monitoring using electrochemical noise measurements on carbon steel in hydrogenocarbonated solution containing chloride ions, 2021, Corrosion Science
  • Electron Transfer Inside a Decaferrocenylated Rotaxane Analyzed by Fast Scan Cyclic Voltammetry and Impedance Spectroscopy, 2021, ChemElectroChem
  • Results of an international round-robin exercise on electrochemical impedance spectroscopy, 2020, Corrosion Engineering Science and Technology The International Journal of Corrosion Processes and Corrosion Control
  • Cover Feature: Electron Transfer Inside a Decaferrocenylated Rotaxane Analyzed by Fast Scan Cyclic Voltammetry and Impedance Spectroscopy (ChemElectroChem 18/2021), 2021, ChemElectroChem

Frequent co-authors in their research projects include Kieu Ngo, Gabriel Boitel-Aullen, Laure Fillaud, Iwona Nierengarten, and Béatrice Delavaux-Nicot. These recurring collaborations indicate ongoing research efforts in their areas of expertise.

Their work is published regularly in notable journals such as ChemElectroChem, Journal of The Electrochemical Society, Corrosion Science, Corrosion Engineering Science and Technology The International Journal of Corrosion Processes and Corrosion Control, and Engineering Failure Analysis.

Best Publications

  • Safety focused modeling of lithium-ion batteries: A review

    S. Abada;Guy Marlair;A. Lecocq;M. Petit

  • A review of impedance measurements for determination of the state-of-charge or state-of-health of secondary batteries

    F. Huet

  • Simplified Electrochemical and Thermal Model of LiFePO4-Graphite Li-Ion Batteries for Fast Charge Applications

    Eric Prada;D. Di Domenico;Yann Creff;J. Bernard

  • Noise Resistance Applied to Corrosion Measurements I. Theoretical Analysis

    U. Bertocci;C. Gabrielli;F. Huet;M. Keddam

  • A Simplified Electrochemical and Thermal Aging Model of LiFePO4-Graphite Li-ion Batteries: Power and Capacity Fade Simulations

    Eric Prada;D. Di Domenico;Y. Creff;J. Bernard

  • Experimental characterization of flow regimes in various porous media—II: Transition to turbulent regime

    D Seguin;A Montillet;J Comiti;F Huet

  • Combined experimental and modeling approaches of the thermal runaway of fresh and aged lithium-ion batteries

    Sara Abada;Martin Petit;Amandine Lecocq;Guy Marlair

  • Drift Removal Procedures in the Analysis of Electrochemical Noise

    U. Bertocci;F. Huet;R. P. Nogueira;P. Rousseau

  • Post-irradiation examination of uranium–7wt% molybdenum atomized dispersion fuel

    Unknown

  • Noise Resistance Applied to Corrosion Measurements II. Experimental Tests

    U. Bertocci;C. Gabrielli;F. Huet;M. Keddam

  • Noise analysis applied to electrochemical systems

    U. Bertocci;F. Huet

  • Potential drops due to an attached bubble on a gas-evolving electrode

    C. Gabrielli;F. Huet;M. Keddam;A. Macias

  • Analysis of Electrochemical Noise by Power Spectral Density Applied to Corrosion Studies Maximum Entropy Method or Fast Fourier Transform

    U. Bertocci;J. Frydman;C. Gabrielli;F. Huet

  • Fluctuations of concentration overpotential generated at gas-evolving electrodes

    C. Gabrielli;F. Huet;R.P. Nogueira

  • Review—Electrochemical Noise Applied in Corrosion Science: Theoretical and Mathematical Models towards Quantitative Analysis

    Da-Hai Xia;Shizhe Song;Yashar Behnamian;Wenbin Hu

  • A review of the probabilistic aspects of localized corrosion

    C. Gabrielli;F. Huet;M. Keddam;R. Oltra

  • Investigation of electrochemical processes by an electrochemical noise analysis. Theoretical and experimental aspects in potentiostatic regime

    C. Gabrielli;F. Huet;M. Keddam

  • Trap effects studies in GaN MESFETs by pulsed measurements

    S. Trassaert;B. Boudart;Christophe Gaquière;D. Théron

  • Scanning Electrochemical Microscopy Imaging by Means of High-Frequency Impedance Measurements in Feedback Mode

    C. Gabrielli;F. Huet;M. Keddam;P. Rousseau

  • A Novel Way of Measuring Local Electrochemical Impedance Using A Single Vibrating Probe

    E. Bayet;F. Huet;M. Keddam;K. Ogle

  • Study of the "coup de fouet" of lead-acid cells as a function of their state-of-charge and state-of-health

    A. Delaille;M. Perrin;F. Huet;L. Hernout

  • Measurement time versus accuracy trade-off analyzed for electrochemical impedance measurements by means of sine, white noise and step signals

    C. Gabrielli;F. Huet;M. Keddam;J.F. Lizee

  • Local electrochemical impedance measurement : scanning vibrating electrode technique in ac mode

    E. Bayet;F. Huet;M. Keddam;K. Ogle

Frequent Co-Authors

Michel Keddam
Michel Keddam Université Paris Cité
Claude Gabrielli
Claude Gabrielli Sorbonne University
Hisasi Takenouti
Hisasi Takenouti Sorbonne University
Vincent Vivier
Vincent Vivier Sorbonne University
Jan Fransaer
Jan Fransaer KU Leuven
X.R. Nóvoa
X.R. Nóvoa Universidade de Vigo
Bernard Tribollet
Bernard Tribollet Sorbonne University
Roland Oltra
Roland Oltra University of Burgundy
Srdjan Nesic
Srdjan Nesic Ohio University

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