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Materials Science

D-Index
62
Citations
11728
World Ranking
6586
National Ranking
169

Chemistry

D-Index
61
Citations
11333
World Ranking
9394
National Ranking
338

Overview

Jean-Claude Grenier is affiliated with the Centre national de la recherche scientifique (CNRS) in France. Their research work primarily focuses on materials science, with an emphasis on materials chemistry and electrical and electronic engineering. The scientist has contributed notably to the study of electronic, optical, and magnetic materials, as well as aspects of computer vision and political science.

The main research topics explored by Jean-Claude Grenier include advancements in solid oxide fuel cells, electronic and structural properties of oxides, magnetic and transport properties of perovskites and related materials, image and video quality assessment, green IT and sustainability, multimedia communication and technology, and catalysis and oxidation reactions.

Jean-Claude Grenier has published in several venues, including:

  • HAL (Le Centre pour la Communication Scientifique Directe)
  • IEEE Access
  • Solid State Ionics
  • Electrocatalysis
  • Journal of The Electrochemical Society

Frequent co-authors in their research projects include:

  • Jean-Marc Bassat
  • Fabrice Mauvy
  • Liping Sun
  • Hui Zhao
  • Li-Hua Huo

Selected recent papers authored or co-authored by Jean-Claude Grenier are:

  • "Power Modeling for Video Streaming Applications on Mobile Devices," 2020, IEEE Access
  • "Electrochemical characterization of PrBa2−xSrxCu3O6+δ layered oxides as innovative and efficient oxygen electrode for IT-SOFCs," 2020, Solid State Ionics
  • "La1.5Nd0.3Pr0.2NiO4.16: A New Cathode Material for IT-Solid Oxide Fuel Cells," 2023, Electrocatalysis
  • "Densification Study of Pr6O11 as a Limiting Step for the Determination of Its Oxygen Transport Properties," 2023, Journal of The Electrochemical Society
  • "Synthesis and high temperature electrochemical properties of Co-doped Sr1.5La0.5MnO4," 2020, HAL (Le Centre pour la Communication Scientifique Directe)

Best Publications

  • Oxygen diffusion and transport properties in non-stoichiometric Ln2 − xNiO4 + δ oxides

    Emmanuelle Boehm;Jean-Marc Bassat;Patrice Dordor;Fabrice Mauvy

  • Oxygen transport properties of La2Ni1−xCuxO4+δ mixed conducting oxides

    Emmanuelle Boehm;Jean-Marc. Bassat;M. C. Steil;Patrice Dordor

  • Electrode properties of Ln2NiO4 + δ ( Ln = La , Nd , Pr ) AC Impedance and DC Polarization Studies

    Fabrice Mauvy;Cécile Lalanne;Jean-Marc Bassat;Jean-Claude Grenier

  • Oxygen electrode reaction on Nd2NiO4+δ cathode materials: impedance spectroscopy study

    F. Mauvy;J.-M. Bassat;E. Boehm;J.-P. Manaud

  • Hydration Properties and Rate Determining Steps of the Oxygen Reduction Reaction of Perovskite-Related Oxides as H+-SOFC Cathodes

    A. Grimaud;F. Mauvy;J. M. Bassat;S. Fourcade

  • Preparation and characterization of Fully stoichiometric SrCoO3 by electrochemical oxidation

    P. Bezdicka;A. Wattiaux;J. C. Grenier;J. C. Grenier;M. Pouchard

  • Structural transitions at high temperature in Sr2Fe2O5

    Jean-Claude Grenier;Norbert Ea;Michel Pouchard;Paul Hagenmuller

  • Perovskite and A2MO4-type oxides as new cathode materials for protonic solid oxide fuel cells

    Julian Dailly;Sébastien Fourcade;Alain Largeteau;Fabrice Mauvy

  • A new superconductor obtained by electrochemical oxidation of La2CuO4

    J.-C. Grenier;A. Wattiaux;N. Lagueyte;J. C. Park

  • High performance praseodymium nickelate oxide cathode for low temperature solid oxide fuel cell

    Claire Ferchaud;Jean-Claude Grenier;Ye Zhang-Steenwinkel;Marc M.A. van Tuel

  • Facile synthesis and excellent electrochemical performance of reduced graphene oxide–Co3O4 yolk-shell nanocages as a catalyst for oxygen evolution reaction

    Zhouling Wu;Li-Ping Sun;Ming Yang;Li-Hua Huo

  • Chemical synthesis and properties of Li1−δ−xNi1+δO2 and Li[Ni2]O4

    G. Dutta;Arumugam Manthiram;John B Goodenough;J. C. Grenier

  • Hydration and transport properties of the Pr2−xSrxNiO4+δ compounds as H+-SOFC cathodes

    Alexis Grimaud;Fabrice Mauvy;Jean Marc Bassat;Sébastien Fourcade

  • Electrode properties of Sr doped La2CuO4 as new cathode material for intermediate-temperature SOFCs

    Qiang Li;Hui Zhao;Lihua Huo;Liping Sun

  • Oxygen reduction on porous Ln2NiO4+δ electrodes

    Fabrice Mauvy;Cécile Lalanne;Jean-Marc Bassat;Jean-Claude Grenier

  • Mise en evidence d'une nouvelle famille de phases de type perovskite lacunaire ordonnee de formule A3M3O8 (AMO2,67)

    Jean-Claude Grenier;Jacques Darriet;Michel Pouchard;Paul Hagenmuller

  • Transport and magnetic properties of the superconducting La2CuO4+δ phases (0 < δ < 0.09) prepared by electrochemical oxidation

    J. C. Grenier;N. Lagueyte;A. Wattiaux;J. P. Doumerc

  • Electrochemical Oxygen Intercalation into Oxide Networks

    J.-C. Grenier;A. Wattiaux;J.-P. Doumerc;P. Dordor

  • Le cobaltite de strontium Sr2Co2O5 : Caracterisation et proprietes magnetiques

    Jean-Claude Grenier;Samir Ghodbane;Gérard Demazeau;Michel Pouchard

  • New cathode materials for ITSOFC: Phase stability, oxygen exchange and cathode properties of La2 − xNiO4 + δ

    H. Zhao;F. Mauvy;C. Lalanne;J.-M. Bassat

Frequent Co-Authors

Jean-Marc Bassat
Jean-Marc Bassat Centre national de la recherche scientifique, CNRS
Michel Pouchard
Michel Pouchard University of Bordeaux
Paul Hagenmuller
Paul Hagenmuller University of Bordeaux
Aline Rougier
Aline Rougier Centre national de la recherche scientifique, CNRS
María Vallet-Regí
María Vallet-Regí Complutense University of Madrid
José M. González-Calbet
José M. González-Calbet Complutense University of Madrid
Jin-Ho Choy
Jin-Ho Choy Ewha Womans University
Gérard Demazeau
Gérard Demazeau University of Bordeaux
André Ayral
André Ayral University of Montpellier
John B. Goodenough
John B. Goodenough The University of Texas at Austin

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