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The Electrochemical Energy Systems Laboratory at ETH Zurich is seeking a highly motivated PhD student to join our research on light-driven CO2 capture. Our group develops molecular systems that harness light to control chemical equilibria and enable energy-efficient carbon capture. By combining molecular design, physical chemistry, spectroscopy, and reaction engineering, we seek to uncover fundamental principles for next-generation responsive CO2 capture technologies.
Conventional CO2 capture technologies are energy intensive. This project explores an alternative concept in which light is used to control CO2 capture and release using photoresponsive molecular switches, photoacids. The research focuses on understanding how photoacids and related molecular switches influence proton transfer, chemical equilibria, and CO2 capture chemistry, with the goal of developing new approaches for energy-efficient carbon capture.
The project combines molecular synthesis, physical chemistry, spectroscopy, and reaction/process engineering to establish the mechanistic principles governing light-responsive CO2 capture systems.
Experience in one or more of the following areas is advantageous, but not required:
We look foreward recieving your online application including the following documents in a single merged PDF file, titled with your last name and initials as well as the application date (for example: 20251201_SmithJT_application) in the following order:
In the field for additional information please specify your MSc and BSc degree information (University, date of the degree, GPA, relevant experience).
Further information about the group can be found on our Website. Questions regarding the position should be directed to Melanie Darugna, [email protected] (no applications).
Please note that we exclusively accept applications submitted through our online application portal. Applications via email or postal services will not be considered.
This is a full-time position with a tentative starting date of July 15, 2026, or later by mutual agreement.
Applications will be accepted until the position is filled.
ETH Zürich is well known for its excellent education, ground-breaking fundamental research and for implementing its results directly into practice.
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