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Materials Science

D-Index
47
Citations
12309
World Ranking
10996
National Ranking
449

Overview

Emma Kendrick is affiliated with the University of Birmingham in the United Kingdom and has a research focus primarily within the field of engineering, with an emphasis on electrical and electronic engineering, automotive engineering, mechanical engineering, industrial and manufacturing engineering, and materials chemistry.

Their work concentrates on various aspects of battery technology and materials science. Key topics covered in their research include advancements in battery materials, advanced battery technologies research, advanced battery materials and technologies, extraction and separation processes, recycling and waste management techniques, supercapacitor materials and fabrication, and electrical and bioimpedance tomography.

Research outputs by Emma Kendrick feature a range of recent papers published largely in 2020. Some of these include:

  • Development of Experimental Techniques for Parameterization of Multi-scale Lithium-ion Battery Models, 2020, Journal of The Electrochemical Society
  • 3D microstructure design of lithium-ion battery electrodes assisted by X-ray nano-computed tomography and modelling, 2020, Nature Communications
  • A review of current collectors for lithium-ion batteries, 2020, Journal of Power Sources
  • The importance of design in lithium ion battery recycling - a critical review, 2020, Green Chemistry
  • A qualitative assessment of lithium ion battery recycling processes, 2020, Resources Conservation and Recycling

Emma Kendrick frequently collaborates with several coauthors, including Peter R. Slater, Kieran O'Regan, Roberto Sommerville, Dominika Gastol, and Paul R. Shearing. These collaborations have contributed to a significant body of work in battery research and related engineering disciplines.

In terms of publication venues, Kendrick has regularly contributed to:

  • ECS Meeting Abstracts
  • Zenodo (CERN European Organization for Nuclear Research)
  • Journal of Power Sources
  • SSRN Electronic Journal
  • Advanced Energy Materials

Overall, Emma Kendrick's research involves the development and characterization of battery materials and technologies, with a focus on sustainability and efficiency in design and recycling processes. Their contributions span experimental methodologies, modeling, and reviews of current materials and technologies that influence battery performance and lifecycle management.

Best Publications

  • Recycling lithium-ion batteries from electric vehicles

    Gavin Harper;Roberto Sommerville;Emma Kendrick;Laura Driscoll

  • Development of Experimental Techniques for Parameterization of Multi-scale Lithium-ion Battery Models

    Chang-Hui Chen;Chang-Hui Chen;Ferran Brosa Planella;Kieran O’Regan;Dominika Gastol

  • 3D microstructure design of lithium-ion battery electrodes assisted by X-ray nano-computed tomography and modelling.

    Xuekun Lu;Xuekun Lu;Antonio Bertei;Donal P. Finegan;Chun Tan

  • A review of current collectors for lithium-ion batteries

    Pengcheng Zhu;Dominika E. Gastol;Jean Marshall;Roberto Sommerville

  • The importance of design in lithium ion battery recycling – a critical review

    Dana L. Thompson;Jennifer M. Hartley;Simon M. Lambert;Muez Shiref

  • Developing apatites for solid oxide fuel cells: insight into structural, transport and doping properties

    Emma Kendrick;M. Saiful Islam;Peter R. Slater

  • A qualitative assessment of lithium ion battery recycling processes

    Roberto Sommerville;Pengcheng Zhu;Mohammad Ali Rajaeifar;Oliver Heidrich

  • 2021 roadmap for sodium-ion batteries

    Nuria Tapia-Ruiz;A. Robert Armstrong;Hande Alptekin;Marco A. Amores

  • High-Voltage Stabilization of O3-Type Layered Oxide for Sodium-Ion Batteries by Simultaneous Tin Dual Modification

    Unknown

  • Design Strategies for High Power vs. High Energy Lithium Ion Cells

    Michael J. Lain;James Brandon;Emma Kendrick

  • Cooperative mechanisms of fast-ion conduction in gallium-based oxides with tetrahedral moieties.

    Emma Kendrick;John Kendrick;Kevin S. Knight;Kevin S. Knight;M. Saiful Islam

  • On the Solubility and Stability of Polyvinylidene Fluoride

    Jean E. Marshall;Anna Zhenova;Samuel Roberts;Tabitha Petchey

  • A review of physical processes used in the safe recycling of lithium ion batteries

    Roberto Sommerville;James Shaw-Stewart;Vannessa Goodship;Neil Rowson

  • A Review of Lithium-Ion Battery Electrode Drying: Mechanisms and Metrology

    Ye Shui Zhang;Ye Shui Zhang;Nicola E. Courtier;Zhenyu Zhang;Kailong Liu

  • Microstructural Evolution of Battery Electrodes During Calendering

    Xuekun Lu;Xuekun Lu;Sohrab R. Daemi;Antonio Bertei;Matthew D.R. Kok

  • Sodium Ion Diffusion and Voltage Trends in Phosphates Na4M3(PO4)2P2O7 (M = Fe, Mn, Co, Ni) for Possible High-Rate Cathodes

    Stephen M. Wood;Chris Eames;Emma Kendrick;M. Saiful Islam

  • Effect of Ga incorporation on the structure and Li ion conductivity of La3Zr2Li7O12

    M. A. Howard;O. Clemens;E. Kendrick;K. S. Knight

  • Roadmap for a sustainable circular economy in lithium-ion and future battery technologies

    Unknown

  • Operando visualisation of battery chemistry in a sodium-ion battery by 23Na magnetic resonance imaging.

    Joshua M. Bray;Claire L. Doswell;Galina E. Pavlovskaya;Lin Chen

  • Lithium ion battery recycling using high-intensity ultrasonication

    Chunhong Lei;Iain Aldous;Jennifer M. Hartley;Dana L. Thompson

  • A comparison of the effect of rare earth vs Si site doping on the conductivities of apatite-type rare earth silicates

    J. E. H. Sansom;E. Kendrick;J. R. Tolchard;M. S. Islam

  • Atomic-scale mechanistic features of oxide ion conduction in apatite-type germanates

    Emma Kendrick;M. Saiful Islam;Peter R. Slater

  • Effect of oxygen content on the 29Si NMR, Raman spectra and oxide ion conductivity of the apatite series, La8+xSr2−x(SiO4)6O2+x/2

    A. Orera;E. Kendrick;D. C. Apperley;V. M. Orera

  • Cation ordering in Li containing garnets: synthesis and structural characterisation of the tetragonal system, Li7La3Sn2O12

    JD Percival;E Kendrick;RI Smith;PR Slater

  • The re-emergence of sodium ion batteries: testing, processing, and manufacturability.

    Samuel Roberts;Emma Kendrick

  • Na2CoSiO4 as a cathode material for sodium-ion batteries: structure, electrochemistry and diffusion pathways

    Joshua C. Treacher;Stephen M. Wood;M. Saiful Islam;Emma Kendrick;Emma Kendrick

Frequent Co-Authors

Peter R. Slater
Peter R. Slater University of Birmingham
Paul R. Shearing
Paul R. Shearing University College London
Dan J. L. Brett
Dan J. L. Brett University College London
Kevin S. Knight
Kevin S. Knight University College London
Widanalage Dhammika Widanage
Widanalage Dhammika Widanage University of Warwick
Andrew P. Abbott
Andrew P. Abbott University of Leicester
Karl S. Ryder
Karl S. Ryder University of Leicester
M. Saiful Islam
M. Saiful Islam University of Oxford
Timothy J. White
Timothy J. White University of Colorado Boulder
Paul A. Christensen
Paul A. Christensen Newcastle University

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