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Engineering and Technology

D-Index
48
Citations
7763
World Ranking
4641
National Ranking
1332

Overview

Iryna V. Zenyuk is affiliated with the University of California, Irvine, in the United States. Their research primarily focuses on engineering and energy, with substantial contributions to electrical and electronic engineering as well as renewable energy, sustainability, and materials chemistry.

The scientist's work spans several subfields including energy engineering and power technology, automotive engineering, and materials chemistry. They have engaged extensively in research related to fuel cells and related materials, electrocatalysts for energy conversion, and hybrid renewable energy systems.

Main topics covered in their research include:

  • Fuel Cells and Related Materials
  • Electrocatalysts for Energy Conversion
  • Hybrid Renewable Energy Systems
  • Advanced Battery Technologies Research
  • Advancements in Solid Oxide Fuel Cells
  • Electrochemical Analysis and Applications

The list of frequent co-authors collaborating with Iryna V. Zenyuk comprises:

  • Plamen Atanassov
  • Ying Huang
  • Yu Morimoto
  • Jack Todd Lang
  • Adam Z. Weber

The scientist has published their work predominantly in the following venues:

  • ECS Meeting Abstracts
  • Journal of The Electrochemical Society
  • SSRN Electronic Journal
  • ACS Applied Materials & Interfaces
  • Advanced Energy Materials

Significant recent papers authored by Iryna V. Zenyuk include:

  • Identification of durable and non-durable FeNx sites in Fe-N-C materials for proton exchange membrane fuel cells, 2020, Nature Catalysis
  • Elucidating electrochemical nitrate and nitrite reduction over atomically-dispersed transition metal sites, 2023, Nature Communications
  • Using operando techniques to understand and design high performance and stable alkaline membrane fuel cells, 2020, Nature Communications
  • Highly Durable and Selective Fe- and Mo-Based Atomically Dispersed Electrocatalysts for Nitrate Reduction to Ammonia via Distinct and Synergized NO2- Pathways, 2022, ACS Catalysis
  • Catalysts by pyrolysis: Transforming metal-organic frameworks (MOFs) precursors into metal-nitrogen-carbon (M-N-C) materials, 2023, Materials Today

Best Publications

  • Identification of Durable and Non-Durable FeNx Sites in Fe-N-C Materials for Proton Exchange Membrane Fuel Cells

    Jingkun Li;Moulay Tahar Sougrati;Andrea Zitolo;James M. Ablett

  • A Critical Review of Modeling Transport Phenomena in Polymer-Electrolyte Fuel Cells

    Adam Z. Weber;Rodney L. Borup;Robert M. Darling;Prodip K. Das

  • Gas-diffusion-layer structural properties under compression via X-ray tomography

    Iryna V. Zenyuk;Dilworth Y. Parkinson;Liam G. Connolly;Adam Z. Weber

  • Elucidating electrochemical nitrate and nitrite reduction over atomically-dispersed transition metal sites

    Unknown

  • Platinum group metal-free NiMo hydrogen oxidation catalysts: high performance and durability in alkaline exchange membrane fuel cells

    Sadia Kabir;Kenneth Lemire;Kateryna Artyushkova;Aaron Roy

  • Probing water distribution in compressed fuel-cell gas-diffusion layers using X-ray computed tomography

    Iryna V. Zenyuk;Dilworth Y. Parkinson;Gisuk G. Hwang;Adam Z. Weber

  • Highly Durable and Selective Fe- and Mo-Based Atomically Dispersed Electrocatalysts for Nitrate Reduction to Ammonia via Distinct and Synergized NO2– Pathways

    Unknown

  • Understanding Impacts of Catalyst-Layer Thickness on Fuel-Cell Performance via Mathematical Modeling

    Iryna V. Zenyuk;Iryna V. Zenyuk;Prodip K. Das;Adam Z. Weber

  • Using operando techniques to understand and design high performance and stable alkaline membrane fuel cells.

    Xiong Peng;Devashish Kulkarni;Ying Huang;Travis J. Omasta

  • Proton Exchange Membrane (PEM) Water Electrolysis: Cell-Level Considerations for Gigawatt-Scale Deployment.

    Unknown

  • Continuum Modeling of Porous Electrodes for Electrochemical Synthesis.

    Unknown

  • Elucidating Effects of Catalyst Loadings and Porous Transport Layer Morphologies on Operation of Proton Exchange Membrane Water Electrolyzers

    Unknown

  • Catalysts by pyrolysis: Transforming metal-organic frameworks (MOFs) precursors into metal-nitrogen-carbon (M-N-C) materials

    Unknown

  • Revealing the role of ionic liquids in promoting fuel cell catalysts reactivity and durability

    Unknown

  • Analysis of representative elementary volume and through-plane regional characteristics of carbon-fiber papers: diffusivity, permeability and electrical/thermal conductivity

    Pablo A. García-Salaberri;Iryna V. Zenyuk;Andrew D. Shum;Gisuk Hwang

  • Nickel–copper supported on a carbon black hydrogen oxidation catalyst integrated into an anion-exchange membrane fuel cell

    Aaron Roy;Morteza Rezaei Talarposhti;Stanley Normile;Iryna V Zenyuk

  • Operando X-ray tomography and sub-second radiography for characterizing transport in polymer electrolyte membrane electrolyzer

    Emily Leonard;Andrew D. Shum;Stanley Normile;Dinesh C. Sabarirajan

  • Insights into Interfacial and Bulk Transport Phenomena Affecting Proton Exchange Membrane Water Electrolyzer Performance at Ultra-Low Iridium Loadings.

    Xiong Peng;Pongsarun Satjaritanun;Zachary Taie;Zachary Taie;Luke Wiles

  • Investigating Evaporation in Gas Diffusion Layers for Fuel Cells with X-ray Computed Tomography

    Iryna V. Zenyuk;Adrien Lamibrac;Jens Eller;Dilworth Y. Parkinson

  • Pathway to Complete Energy Sector Decarbonization with Available Iridium Resources using Ultralow Loaded Water Electrolyzers

    Zachary Taie;Zachary Taie;Xiong Peng;Devashish Kulkarni;Iryna V. Zenyuk

  • Hot topics in alkaline exchange membrane fuel cells

    Alexey Serov;Iryna V. Zenyuk;Christopher G. Arges;Marian Chatenet;Marian Chatenet

  • Observation of Preferential Pathways for Oxygen Removal through Porous Transport Layers of Polymer Electrolyte Water Electrolyzers.

    Pongsarun Satjaritanun;Maeve O'Brien;Devashish Kulkarni;Sirivatch Shimpalee

  • Nano-structured platinum group metal-free catalysts and their integration in fuel cell electrode architectures

    Alexey Serov;Andrew D. Shum;Xianghui Xiao;Vincent De Andrade

  • Micro-Scale Analysis of Liquid Water Breakthrough inside Gas Diffusion Layer for PEMFC Using X-ray Computed Tomography and Lattice Boltzmann Method

    P. Satjaritanun;J. W. Weidner;S. Hirano;Z. Lu

  • The Role of Compressive Stress on Gas Diffusion Media Morphology and Fuel Cell Performance

    Robert William Atkinson;Yannick Garsany;Benjamin D. Gould;Karen E. Swider-Lyons

  • Deterministic contact mechanics model applied to electrode interfaces in polymer electrolyte fuel cells and interfacial water accumulation

    I.V. Zenyuk;E.C. Kumbur;S. Litster

  • Direct observations of liquid water formation at nano- and micro-scale in platinum group metal-free electrodes by operando X-ray computed tomography

    Stanley J. Normile;Dinesh C. Sabarirajan;Osvaldo Calzada;Vincent De Andrade

Frequent Co-Authors

Adam Z. Weber
Adam Z. Weber Lawrence Berkeley National Laboratory
Plamen Atanassov
Plamen Atanassov University of California, Irvine
Sirivatch Shimpalee
Sirivatch Shimpalee University of South Carolina
Shawn Litster
Shawn Litster Carnegie Mellon University
John W. Weidner
John W. Weidner University of Cincinnati
Nobumichi Tamura
Nobumichi Tamura Lawrence Berkeley National Laboratory
Alexey Serov
Alexey Serov University of New Mexico
Kateryna Artyushkova
Kateryna Artyushkova Physical Electronics, Inc.
Rangachary Mukundan
Rangachary Mukundan Los Alamos National Laboratory
Katherine E. Ayers
Katherine E. Ayers Hydrogenics (Belgium)

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