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phenomenon where hydrogen atoms permeate storage materials, compromising their structural integrity. The research will create a multi-layered, self-healing coating that will limit hydrogen adsorption by
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its safe and efficient storage, particularly due to hydrogen embrittlement – a phenomenon where hydrogen atoms permeate storage materials, compromising their structural integrity. The research will
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Berlin, and the Max Planck Institute in Hamburg. Our work combines physics, chemistry, and materials science – pushing the frontiers of quantum materials research. The overarching goal of the Collaborative
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are promising sustainable alternatives to lithium-ion systems, leveraging abundant, low-cost materials (Na, Fe, Al, biomass-derived carbon). However, a major bottleneck is the instability of the SEI formed during
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candidate will investigate ion transport through atomically thin membranes made of 2D polymers and graphene derivatives in close collaboration with experimental partner groups MPI Halle and Leiden University
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passionate about working in a team. You will lead the publication of results in high-impact scientific journals. You have a strong background in physics, geophysics, materials science, computation, engineering
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are curious, problem-solving oriented and passionate about working in a team. You will lead the publication of results in high-impact scientific journals. You have a strong background in physics
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new sustainable femtosecond laser nanomanufacturing process to overcome the challenges of atomic sale precision, feature size and defects rates for quantum dots. In this project, molecular dynamics
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We are seeking an experienced researcher in experimental plasma physics, with a strong focus on wave heating and current drive systems. You have substantial expertise in designing radio frequency
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is working to be the state’s world-class cancer research institute, jointly resourced by the Federal Department of Health, CALHN and the University of Adelaide. Reporting to Associate Prof. Robin Hobbs