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Engineering and Technology

D-Index
39
Citations
6257
World Ranking
7688
National Ranking
261

Overview

Andrei Kulikovsky is affiliated with Forschungszentrum Jülich in Germany, where their research primarily focuses on topics related to fuel cells and electrochemical systems. Their expertise spans several fields and subfields, including Engineering, Energy, Electrical and Electronic Engineering, Renewable Energy, Sustainability and the Environment, Electrochemistry, Materials Chemistry, and Polymers and Plastics.

Their research has contributed to the understanding and development of fuel cells and related materials, electrocatalysts for energy conversion, and electrochemical analysis and applications. Specific areas of work include advancements in solid oxide fuel cells, conducting polymers, molecular junctions and nanostructures, and advanced battery technologies.

Among their recent papers are:

  • Design of PGM-free cathodic catalyst layers for advanced PEM fuel cells, 2022, Applied Catalysis B: Environmental
  • PEM fuel cell distribution of relaxation times: a method for the calculation and behavior of an oxygen transport peak, 2020, Physical Chemistry Chemical Physics
  • Understanding the distribution of relaxation times of a low-Pt PEM fuel cell, 2021, Electrochimica Acta
  • Electron and proton conductivity of Fe-N-C cathodes for PEM fuel cells: A model-based electrochemical impedance spectroscopy measurement, 2020, Electrochemistry Communications
  • Distribution of Relaxation Times: A Tool for Measuring Oxygen Transport Resistivity of a Low-Pt PEM Fuel Cell Cathode, 2020, Journal of The Electrochemical Society

Their frequent coauthors include:

  • Tatyana V. Reshetenko
  • Michael Eikerling
  • Madeleine Odgaard
  • Alexey Serov
  • Thomas Kadyk

Andrei Kulikovsky's publications are often featured in scientific journals such as:

  • Journal of The Electrochemical Society
  • arXiv (Cornell University)
  • Electrochimica Acta
  • ECS Meeting Abstracts
  • Electrochemistry Communications

Best Publications

  • The role of photoionization in positive streamer dynamics

    A A Kulikovsky

  • Positive streamer between parallel plate electrodes in atmospheric pressure air

    A A Kulikovsky

  • Quasi-3D Modeling of Water Transport in Polymer Electrolyte Fuel Cells

    A. A. Kulikovsky

  • Modeling the Cathode Compartment of Polymer Electrolyte Fuel Cells: Dead and Active Reaction Zones

    A. A. Kulikovsky;J. Divisek;A. A. Kornyshev

  • A more accurate Scharfetter-Gummel algorithm of electron transport for semiconductor and gas discharge simulation

    A. A. Kulikovsky

  • Two‐Dimensional Simulation of Direct Methanol Fuel Cell. A New (Embedded) Type of Current Collector

    A. A. Kulikovsky;J. Divisek;A. A. Kornyshev

  • Two-dimensional numerical modelling of a direct methanol fuel cell

    A.A. Kulikovsky

  • Two-dimensional simulation of the positive streamer in N2 between parallel-plate electrodes

    A A Kulikovsky

  • Analytical Modelling of Fuel Cells

    Andrei A. Kulikovsky

  • A simple model of a high temperature PEM fuel cell

    O. Shamardina;A. Chertovich;A.A. Kulikovsky;A.R. Khokhlov

  • Production of chemically active species in the air by a single positive streamer in a nonuniform field

    A.A. Kulikovsky

  • Polymer Electrolyte Fuel Cells: Physical Principles of Materials and Operation

    Michael Eikerling;Andrei A. Kulikovsky

  • The structure of streamers in N2. I. fast method of space-charge dominated plasma simulation

    A A Kulikovsky

  • The effect of stoichiometric ratio λ on the performance of a polymer electrolyte fuel cell

    A.A. Kulikovsky

  • The voltage–current curve of a direct methanol fuel cell: “exact” and fitting equations

    A.A Kulikovsky

  • Analytical solutions for impedance of the cathode catalyst layer in PEM fuel cell: Layer parameters from impedance spectrum without fitting

    Andrei Kulikovsky;M. Eikerling

  • The regimes of catalyst layer operation in a fuel cell

    A.A. Kulikovsky

  • The voltage–current curve of a polymer electrolyte fuel cell: “exact” and fitting equations

    A.A. Kulikovsky

  • A physical model for catalyst layer impedance

    A.A. Kulikovsky

  • Analytical model of the anode side of DMFC: the effect of non-Tafel kinetics on cell performance

    A.A Kulikovsky

  • Feeding PEM fuel cells

    A.A. Kulikovsky;A. Kucernak;A.A. Kornyshev

Frequent Co-Authors

Alexei A. Kornyshev
Alexei A. Kornyshev Imperial College London
Michael Eikerling
Michael Eikerling Forschungszentrum Jülich
Dirk Uwe Sauer
Dirk Uwe Sauer RWTH Aachen University
Detlef Stolten
Detlef Stolten RWTH Aachen University
Alexey Serov
Alexey Serov University of New Mexico
Alexei R. Khokhlov
Alexei R. Khokhlov Lomonosov Moscow State University
Plamen Atanassov
Plamen Atanassov University of California, Irvine
Anthony Kucernak
Anthony Kucernak Imperial College London

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