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Overview

Vladimir Yufit is affiliated with Imperial College London in the United Kingdom. Their research focuses primarily on engineering, materials science, and energy, with special emphasis on advanced battery technologies and related fields.

The scientist's expertise spans several subfields of study, including electrical and electronic engineering, renewable energy, sustainability and the environment, electronic, optical and magnetic materials, automotive engineering, and polymers and plastics. This multidisciplinary approach aligns with their research activities in energy storage and conversion technologies.

Yufit's main topics of work include:

  • Advanced battery technologies research
  • Electrocatalysts for energy conversion
  • Supercapacitor materials and fabrication
  • Advanced battery materials and technologies
  • Perovskite materials and applications
  • Transition metal oxide nanomaterials

Their publication record consists of research articles in respected venues:

  • "Modelling of redox flow battery electrode processes at a range of length scales: a review," 2020, Sustainable Energy & Fuels
  • "A cost-effective alkaline polysulfide-air redox flow battery enabled by a dual-membrane cell architecture," 2022, Nature Communications
  • "Evaluation of a Non-Aqueous Vanadium Redox Flow Battery Using a Deep Eutectic Solvent and Graphene-Modified Carbon Electrodes via Electrophoretic Deposition," 2020, Batteries
  • "Hybrid Redox Flow Cells with Enhanced Electrochemical Performance via Binderless and Electrophoretically Deposited Nitrogen-Doped Graphene on Carbon Paper Electrodes," 2020, ACS Applied Materials & Interfaces
  • "The influence of zinc electrode substrate, electrolyte flow rate and current density on zinc-nickel flow cell performance," 2021, Electrochimica Acta

Frequent publication venues for Yufit include Batteries (2 publications), Nature Communications, Sustainable Energy & Fuels, ACS Applied Materials & Interfaces, and Electrochimica Acta.

The scientist has collaborated regularly with several researchers. Frequent co-authors are:

  • Nigel P. Brandon
  • Barun Kumar Chakrabarti
  • Evangelos Kalamaras
  • Javier Rubio-García
  • Chee Tong John Low

Best Publications

  • Operando Visualization and Multi-scale Tomography Studies of Dendrite Formation and Dissolution in Zinc Batteries

    Vladimir Yufit;Farid Tariq;David S. Eastwood;Moshiel Biton

  • Application of carbon materials in redox flow batteries

    M.H. Chakrabarti;M.H. Chakrabarti;N.P. Brandon;S.A. Hajimolana;F. Tariq

  • Coupled thermal–electrochemical modelling of uneven heat generation in lithium-ion battery packs

    Billy Wu;Vladimir Yufit;Monica Marinescu;Gregory J. Offer

  • The effect of thermal gradients on the performance of lithium-ion batteries

    Yannic Troxler;Billy Wu;Monica Marinescu;Vladimir Yufit

  • Three-dimensional thin-film Li-ion microbatteries for autonomous MEMS

    M. Nathan;D. Golodnitsky;V. Yufit;E. Strauss

  • Online Measurement of Battery Impedance Using Motor Controller Excitation

    David A. Howey;Paul D. Mitcheson;Vladimir Yufit;Gregory J. Offer

  • Module design and fault diagnosis in electric vehicle batteries

    Gregory J. Offer;Vladimir Yufit;David A. Howey;Billy Wu

  • Progress in three-dimensional (3D) Li-ion microbatteries

    D. Golodnitsky;M. Nathan;V. Yufit;E. Strauss

  • Novel application of differential thermal voltammetry as an in-depth state-of-health diagnosis method for lithium-ion batteries

    Yu Merla;Billy Wu;Vladimir Yufit;Nigel P. Brandon

  • Differential thermal voltammetry for tracking of degradation in lithium-ion batteries

    Billy Wu;Vladimir Yufit;Yu Merla;Ricardo F. Martinez-Botas

  • Progress in the electrochemical modification of graphene-based materials and their applications

    M.H. Chakrabarti;M.H. Chakrabarti;C.T.J. Low;N.P. Brandon;V. Yufit

  • Advanced materials for the 3D microbattery

    D. Golodnitsky;V. Yufit;M. Nathan;I. Shechtman

  • Microstructural analysis of a solid oxide fuel cell anode using focused ion beam techniques coupled with electrochemical simulation

    P.R. Shearing;Q. Cai;J.I. Golbert;V. Yufit

  • Effect of carbon substrate on SEI composition and morphology

    E. Peled;D. Golodnitsky;A. Ulus;V. Yufit

  • Investigation of lithium-ion polymer battery cell failure using X-ray computed tomography

    V. Yufit;P. Shearing;R.W. Hamilton;P.D. Lee

  • Lithiation-induced dilation mapping in a lithium-ion battery electrode by 3D X-ray microscopy and digital volume correlation

    David S. Eastwood;Vladimir Yufit;Jeff Gelb;Allen Gu

  • Three-dimensional high resolution X-ray imaging and quantification of lithium ion battery mesocarbon microbead anodes

    F. Tariq;V. Yufit;M. Kishimoto;P.R. Shearing

  • Understanding the role of the porous electrode microstructure in redox flow battery performance using an experimentally validated 3D pore-scale lattice Boltzmann model

    Duo Zhang;Antoni Forner-Cuenca;Oluwadamilola O. Taiwo;Vladimir Yufit

  • 3-d microbatteries based on interlaced micro-container structures

    Menachem Nathan;Emanuel Peled;Diana Golodnitsky;Vladimir Yufit

  • Fabrication and characterization of Ni/ScSZ cermet anodes for IT-SOFCs

    Mahendra Rao Somalu;V. Yufit;D. Cumming;E. Lorente

Frequent Co-Authors

Nigel P. Brandon
Nigel P. Brandon Imperial College London
Emanuel Peled
Emanuel Peled Tel Aviv University
Gregory J. Offer
Gregory J. Offer Imperial College London
Paul R. Shearing
Paul R. Shearing University College London
Peter D. Lee
Peter D. Lee University College London
Dan J. L. Brett
Dan J. L. Brett University College London
David A. Howey
David A. Howey University of Oxford
Paul D. Mitcheson
Paul D. Mitcheson Imperial College London
Philip J. Withers
Philip J. Withers University of Manchester
Stephen J. Harris
Stephen J. Harris Lawrence Berkeley National Laboratory

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