Linnéa Strandberg

Doctoral Student at Chemical Physics

My project work involves development of new catalyst materials for both PEMFC and AEMEC.
Model electrodes will be produced with state-of-the-art thin film deposition techniques,
and their electrochemical properties are evaluated with RDE measurements as well as in real devices.
Furthermore, the catalyst materials are physically characterized with SEM/EDX, XPS and TEM etc.

Much of my work is done in collaboration with seven other PhD students in the PUSH project,
which aims to develop the technologies used for both production, usage and storage of hydrogen.

Source: chalmers.se
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Showing 5 publications

2023

Electrode Degradation in Polymer Electrolyte Fuel Cells

Linnéa Strandberg
Licentiate thesis
2023

Fundamental insight into enhanced activity of Pd/CeO2 thin films in hydrogen oxidation reaction in alkaline media

Mathilde Luneau, Linnéa Strandberg, Gerard Montserrat Siso et al
Journal of Materials Chemistry A. Vol. 11 (30), p. 16370-16382
Journal article
2023

Fuel cell electrode degradation followed by identical location transmission electron microscopy

Victor Shokhen, Linnéa Strandberg, Magnus Skoglundh et al
Journal of Materials Chemistry A. Vol. 11 (39), p. 21029-21035
Journal article
2022

Impact of Accelerated Stress Tests on the Cathodic Catalytic Layer in a Proton Exchange Membrane (PEM) Fuel Cell Studied by Identical Location Scanning Electron Microscopy

Victor Shokhen, Linnéa Strandberg, Magnus Skoglundh et al
ACS Applied Energy Materials. Vol. 5 (9), p. 11200-11212
Journal article
2022

Comparison of Oxygen Adsorption and Platinum Dissolution in Acid and Alkaline Solutions Using Electrochemical Quartz Crystal Microbalance

Linnéa Strandberg, Victor Shokhen, Mathilde Luneau et al
ChemElectroChem. Vol. 9 (22)
Journal article

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