Matthew Kok

Matthew Kok

University College London

H-index: 24

Europe-United Kingdom

About Matthew Kok

Matthew Kok, With an exceptional h-index of 24 and a recent h-index of 23 (since 2020), a distinguished researcher at University College London, specializes in the field of Flow Batteries, Multiphysics Simulations, Electrode, Anisotropy.

His recent articles reflect a diverse array of research interests and contributions to the field:

Examining the effects of silicon based additives on the long-term cycling capabilities of cylindrical cells

Evaluating Long-Term Cycling Degradation in Cylindrical Li-Ion Batteries Using X-ray Tomography and Virtual Unrolling

Tracking the Lifecycle of a 21700 Cell: A 4D Tomography and Digital Disassembly Study

Electrospun Fibrous Mats

A greyscale erosion algorithm for tomography (GREAT) to rapidly detect battery particle defects

Motion-enhancement assisted digital image correlation of lithium-ion batteries during lithiation

The effect of non-uniform compression on the performance of polymer electrolyte fuel cells

Ceramic supports with highly dense and aligned pores for moltencarbonate based CO2 separation membranes

Matthew Kok Information

University

Position

___

Citations(all)

1457

Citations(since 2020)

1393

Cited By

382

hIndex(all)

24

hIndex(since 2020)

23

i10Index(all)

30

i10Index(since 2020)

29

Email

University Profile Page

Google Scholar

Matthew Kok Skills & Research Interests

Flow Batteries

Multiphysics Simulations

Electrode

Anisotropy

Top articles of Matthew Kok

Examining the effects of silicon based additives on the long-term cycling capabilities of cylindrical cells

Journal of Power Sources

2024/1/30

Evaluating Long-Term Cycling Degradation in Cylindrical Li-Ion Batteries Using X-ray Tomography and Virtual Unrolling

Journal of The Electrochemical Society

2023/9/25

Tracking the Lifecycle of a 21700 Cell: A 4D Tomography and Digital Disassembly Study

Journal of The Electrochemical Society

2023/9/4

Electrospun Fibrous Mats

2023/4/14

Jeff Gostick
Jeff Gostick

H-Index: 28

Matthew Kok
Matthew Kok

H-Index: 11

A greyscale erosion algorithm for tomography (GREAT) to rapidly detect battery particle defects

npj Materials Degradation

2022/5/30

Motion-enhancement assisted digital image correlation of lithium-ion batteries during lithiation

Journal of Power Sources

2022/4/15

The effect of non-uniform compression on the performance of polymer electrolyte fuel cells

Journal of Power Sources

2022/2/15

Ceramic supports with highly dense and aligned pores for moltencarbonate based CO2 separation membranes

2022

High‐Density Lignin‐Derived Carbon Nanofiber Supercapacitors with Enhanced Volumetric Energy Density (Adv. Sci. 17/2021)

Advanced Science

2021/9

Electrospinning as a route to advanced carbon fibre materials for selected low-temperature electrochemical devices: A review

2021/8/1

High CO2 permeability in supported molten-salt membranes with highly dense and aligned pores produced by directional solidification

Journal of Membrane Science

2021/7/15

Fabrication of high surface area ribbon electrodes for use in redox flow batteries via coaxial electrospinning

Journal of Energy Storage

2021/1/1

Identifying defects in Li-ion cells using ultrasound acoustic measurements

Journal of The Electrochemical Society

2020/9/1

Probing heterogeneity in li-ion batteries with coupled multiscale models of electrochemistry and thermal transport using tomographic domains

Journal of The Electrochemical Society

2020/7/20

The role of bi-polar plate design and the start-up protocol in the spatiotemporal dynamics during solid oxide fuel cell anode reduction

Energies

2020/7/10

Resolving Li‐ion battery electrode particles using rapid lab‐based X‐ray nano‐computed tomography for high‐throughput quantification

Advanced Science

2020/6

Lignin-derived electrospun freestanding carbons as alternative electrodes for redox flow batteries

Carbon

2020/2/1

X-ray micro-computed tomography of polymer electrolyte fuel cells: what is the representative elementary area?

Journal of The Electrochemical Society

2020/1/22

Microstructural evolution of battery electrodes during calendering

Joule

2020/12/16

Multi-Length Scale Analysis of Individual NMC811 Particle Degradation Using X-Ray Computed Tomography

Electrochemical Society Meeting Abstracts prime2020

2020/11/23

See List of Professors in Matthew Kok University(University College London)

Co-Authors

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