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Chemical Communications (Cambridge, England)|September 29, 2015
Visualising the problems with balancing lithium-sulfur batteries by "mapping" internal resistanceMatthew J Lacey, Kristina Edström, Daniel Brandell
Chemical Communications (Cambridge, England)|October 10, 2015
A stable graphite negative electrode for the lithium-sulfur batteryFabian Jeschull, Daniel Brandell, Kristina Edström, et al.
Chemical Communications (Cambridge, England)|August 15, 2013
Why PEO as a binder or polymer coating increases capacity in the Li-S systemMatthew J Lacey, Fabian Jeschull, Kristina Edström, et al.
Chemsuschem|August 30, 2014
Environmentally-friendly lithium recycling from a spent organic li-ion batteryStéven Renault, Daniel Brandell, Kristina Edström
Chemical Communications (Cambridge, England)|February 2, 2013
Improving the electrochemical performance of organic Li-ion battery electrodesStéven Renault, Daniel Brandell, Torbjörn Gustafsson, et al.
ACS Applied Materials & Interfaces|March 25, 2017
Surface Layer Evolution on Graphite During Electrochemical Sodium-tetraglyme Co-intercalationJulia Maibach, Fabian Jeschull, Daniel Brandell, et al.
Chemical Communications (Cambridge, England)|December 20, 2021
Towards reliable three-electrode cells for lithium-sulfur batteriesYu-Chuan Chien, Daniel Brandell, Matthew J Lacey
Chemphyschem : a European Journal of Chemical Physics and Physical Chemistry|April 21, 2020
Interactions and Transport in Highly Concentrated LiTFSI-based ElectrolytesViktor Nilsson, Diana Bernin, Daniel Brandell, et al.
ACS Applied Energy Materials|January 31, 2022
Concentrated LiFSI-Ethylene Carbonate Electrolytes and Their Compatibility with High-Capacity and High-Voltage ElectrodesBurak Aktekin, Guiomar Hernández, Reza Younesi, et al.
Chemistryopen|August 4, 2021
Poly(Ethylene Glycol-block-2-Ethyl-2-Oxazoline) as Cathode Binder in Lithium-Sulfur BatteriesYu-Chuan Chien, Hohyoun Jang, Daniel Brandell, et al.
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