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Field
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, costum-synthesized dyes) on hBN, graphene, and transition metal dichalcogenides - Study of the emerging collective excitations by Raman scattering, linear optical spectroscopy, and near-field microscopy
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and the behaviour of carbon-based materials such as graphene. Your project on the atomistic mechanisms of hydrogen embrittlement in circular steels aligns perfectly with the team's broader interest in
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surface science. The aim of the project is to develop ultra-thin transition metal membranes on porous graphene. The gas transport mechanisms, including energy barriers related to H2 diffusion and resistance
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Fabrication and characterization of van der Waals heterostructure devices Optoelectronic and transport measurements, including at cryogenic temperatures Development and optimization of graphene-based mid
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I supervise a wide range of PhD projects on experimental research into the electronic properties of novel quantum materials including topological insulators, graphene, and other atomically thin two
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chapters, and shorter contributions such as blogposts. Some of these will be co-authored pieces with the principal investigator (Prof Van Calster), the postdoc and other team members. Contribution
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shorter contributions such as blogposts. Some of these will be co-authored pieces with the principal investigator (Prof Van Calster), the postdoc and other team members. Contribution to the outreach
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materials for sustainable energy, with proven expertise in hydrogen embrittlement, hydrogen storage and the behaviour of carbon-based materials such as graphene. Your project on the atomistic mechanisms
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structure. This leads to remarkable electronic properties. For example, twisted bilayer graphene can exhibit superconductivity, while a single layer of graphene does not. These materials also show unusual
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applications. The ultimate goal of the research is to understand quantum transport through molecular structure such as single molecules, self-assembled monolayers, graphene nanoribbons and van der Waals