Matthew J. Lacey
Matthew J. Lacey
Senior Engineer, Scania CV AB
Verified email at - Homepage
Cited by
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Beyond PEO—Alternative host materials for Li+-conducting solid polymer electrolytes
J Mindemark, MJ Lacey, T Bowden, D Brandell
Progress in Polymer Science 81, 114-143, 2018
3D lithium ion batteries—from fundamentals to fabrication
M Roberts, P Johns, J Owen, D Brandell, K Edstrom, G El Enany, C Guery, ...
Journal of Materials Chemistry 21 (27), 9876-9890, 2011
A non-academic perspective on the future of lithium-based batteries
JT Frith, MJ Lacey, U Ulissi
Nature communications 14 (1), 420, 2023
A redox shuttle to facilitate oxygen reduction in the lithium air battery
MJ Lacey, JT Frith, JR Owen
Electrochemistry Communications 26, 74-76, 2013
Functional, water-soluble binders for improved capacity and stability of lithium–sulfur batteries
MJ Lacey, F Jeschull, K Edström, D Brandell
Journal of Power Sources 264, 8-14, 2014
Why PEO as a binder or polymer coating increases capacity in the Li–S system
MJ Lacey, F Jeschull, K Edström, D Brandell
Chemical communications 49 (76), 8531-8533, 2013
Porosity blocking in highly porous carbon black by PVDF binder and its implications for the Li–S system
MJ Lacey, F Jeschull, K Edström, D Brandell
The Journal of Physical Chemistry C 118 (45), 25890-25898, 2014
The Li–S battery: an investigation of redox shuttle and self-discharge behaviour with LiNO 3-containing electrolytes
MJ Lacey, A Yalamanchili, J Maibach, C Tengstedt, K Edström, D Brandell
RSC advances 6 (5), 3632-3641, 2016
Understanding the Capacity Loss in LiNi0.5Mn1.5O4–Li4Ti5O12 Lithium-Ion Cells at Ambient and Elevated Temperatures
B Aktekin, MJ Lacey, T Nordh, R Younesi, C Tengstedt, W Zipprich, ...
The Journal of Physical Chemistry C 122 (21), 11234-11248, 2018
Highly concentrated LiTFSI–EC electrolytes for lithium metal batteries
V Nilsson, A Kotronia, M Lacey, K Edström, P Johansson
ACS Applied Energy Materials 3 (1), 200-207, 2019
Operando investigation of the solid electrolyte interphase mechanical and transport properties formed from vinylene carbonate and fluoroethylene carbonate
PG Kitz, MJ Lacey, P Novák, EJ Berg
Journal of Power Sources 477, 228567, 2020
Operando EQCM-D with simultaneous in situ EIS: new insights into interphase formation in Li ion batteries
PG Kitz, MJ Lacey, P Novák, EJ Berg
Analytical chemistry 91 (3), 2296-2303, 2018
Influence of the electrolyte on the internal resistance of lithium− sulfur batteries studied with an intermittent current interruption method
MJ Lacey
ChemElectroChem 4 (8), 1997-2004, 2017
Influence of inactive electrode components on degradation phenomena in nano-Si electrodes for Li-ion batteries
F Jeschull, F Lindgren, MJ Lacey, F Björefors, K Edström, D Brandell
Journal of Power Sources 325, 513-524, 2016
Bridging physics-based and equivalent circuit models for lithium-ion batteries
Z Geng, S Wang, MJ Lacey, D Brandell, T Thiringer
Electrochimica Acta 372, 137829, 2021
Simultaneous monitoring of crystalline active materials and resistance evolution in lithium–sulfur batteries
YC Chien, AS Menon, WR Brant, D Brandell, MJ Lacey
Journal of the American Chemical Society 142 (3), 1449-1456, 2019
A stable graphite negative electrode for the lithium–sulfur battery
F Jeschull, D Brandell, K Edström, MJ Lacey
Chemical communications 51 (96), 17100-17103, 2015
Functional binders as graphite exfoliation suppressants in aggressive electrolytes for lithium-ion batteries
F Jeschull, MJ Lacey, D Brandell
Electrochimica Acta 175, 141-150, 2015
ε-Caprolactone-based solid polymer electrolytes for lithium-ion batteries: synthesis, electrochemical characterization and mechanical stabilization by block copolymerization
A Bergfelt, MJ Lacey, J Hedman, C Sångeland, D Brandell, T Bowden
RSC advances 8 (30), 16716-16725, 2018
A Robust, Water‐Based, Functional Binder Framework for High‐Energy Lithium–Sulfur Batteries
MJ Lacey, V Österlund, A Bergfelt, F Jeschull, T Bowden, D Brandell
ChemSusChem 10 (13), 2758-2766, 2017
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