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Jonathan Quinson

Showing results (41-50 of 44) with videos related to

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Analytical Chemistry|June 9, 2016
Synchrotron-Based Infrared Microanalysis of Biological Redox Processes under Electrochemical ControlPhilip A Ash, Holly A Reeve, Jonathan Quinson, et al.
Journal of Applied Crystallography|October 10, 2024
The AUREX cell: a versatile <i>operando</i> electrochemical cell for studying catalytic materials using X-ray diffraction, total scattering and X-ray absorption spectroscopy under working conditionsSara Frank, Marcel Ceccato, Henrik S Jeppesen, et al.
Journal of the American Chemical Society|January 12, 2023
Chemical Insights into the Formation of Colloidal Iridium Nanoparticles from In Situ X-ray Total Scattering: Influence of Precursors and Cations on the Reaction PathwayJette K Mathiesen, Jonathan Quinson, Sonja Blaseio, et al.
Nature Materials|August 26, 2020
Self-supported Pt-CoO networks combining high specific activity with high surface area for oxygen reductionGustav W Sievers, Anders W Jensen, Jonathan Quinson, et al.
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Showing results (41-50 of 44) with videos related to

Sort By:
Pageof 5
You have reached the last page of results.This site can display upto 44 results.
Analytical Chemistry|June 9, 2016
Synchrotron-Based Infrared Microanalysis of Biological Redox Processes under Electrochemical ControlPhilip A Ash, Holly A Reeve, Jonathan Quinson, et al.
Journal of Applied Crystallography|October 10, 2024
The AUREX cell: a versatile <i>operando</i> electrochemical cell for studying catalytic materials using X-ray diffraction, total scattering and X-ray absorption spectroscopy under working conditionsSara Frank, Marcel Ceccato, Henrik S Jeppesen, et al.
Journal of the American Chemical Society|January 12, 2023
Chemical Insights into the Formation of Colloidal Iridium Nanoparticles from In Situ X-ray Total Scattering: Influence of Precursors and Cations on the Reaction PathwayJette K Mathiesen, Jonathan Quinson, Sonja Blaseio, et al.
Nature Materials|August 26, 2020
Self-supported Pt-CoO networks combining high specific activity with high surface area for oxygen reductionGustav W Sievers, Anders W Jensen, Jonathan Quinson, et al.
Pageof 5