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groundbreaking research project exploring the feasibility of optical manipulation of spatial magnetization in two-dimensional (2D) materials. WHERE? At the ICMM-CSIC, Madrid, a newly awarded Severo Ochoa Centre
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, published in the Diário da República, 2nd series, no. 100, of 22 May (hereinafter referred to as Regulation); Scientific Employment Regulation, republished by Regulation No. 1083/2023, published in
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DoS: Dr. Juri Na (juri.na@plymouth.ac.uk ) 2nd Supervisor: Dr. Claire Adams (claire.adams@plymouth.ac.uk ) 3rd Supervisor: Dr. Emanuela Ercolano (emanuela.ercolano@plymouth.ac.uk ) Applications
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considered. This vacancy is open till September 21st, 2025. The first job interviews will take place between September 29th and October 10th, 2025. Second round interviews (if applicable) will take place
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to water, with the Zinc acting as the anode and hydrogen evolution potentially occurring at the steel surface. The successful PhD candidate will work at the forefront of hydrogen materials research, with
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by M: Fe, Co, Ni and X: S, Se. During the initial steps of the planned work, the candidate will deal with the growth of 3D bulk MPX3 materials using CVT method. The second part of the research program
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mechanical fatigue—individually and sequentially, followed by electrical breakdown testing to assess their impact on the dielectric performance of the material subsystems. The target is to develop a
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second class UK honours degree or equivalent. This project would suit an applicant with a materials science/engineering, mechanical/chemical engineering or chemistry background or a related discipline
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» Inorganic chemistry Chemistry » Physical chemistry Engineering » Chemical engineering Engineering » Materials engineering Technology » Energy technology Technology » Materials technology Researcher Profile
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of helical ballistic edge states. For 2D systems or 3D higher order topological insulators (TI), they form one dimensional conducting channels on the edges with two time-reversed spin-momentum-locked states