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of heavy fermion physics, concealed Mott criticality, strange metals and unconventional superconductivity in twisted bilayer graphene, rhombohedral graphene and transition-metal dichalcogenide bilayers. We
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Prof. Youngseok Kim (Ohio State University) – Quantum Computation & Quantum Algorithms Prof. Pilkyung Moon (NYU Shanghai) – Graphene, Twistronics, Novel Topological Materials Website of our team https
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lab is offering a 24-month fixed term postdoctoral position to a motivated candidate with experience in linker chemistry and graphene functionalization, and interest in working with infection
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energy, ICT, and life sciences. About the research project The research is about integrated cooling and heat dissipations solutions using low-dimensional materials such as graphene, hexagonal boron nitride
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to a motivated candidate with experience in linker chemistry and graphene functionalization, and interest in working with infection diagnostics. With us, you will experience a dynamic and supportive work
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. Major advances have been made in diverse application areas: adsorbents, graphene biocarbons, co-crystals, cooperative multifunctional catalysts, bio-based catalysts, and bioaerogels. Molecular modeling
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developed high-sensitivity detectors to probe newly discovered anomalous quantum Hall effect phases in rhombohedral graphene. In particular, we wish to study phases that, due to interaction, exhibit
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materials such as graphene, hexagonal boron nitride and carbon nanotubes for cooling of power modules. Who we are looking for The following requirements are mandatory: Ph.D. within one of following fields
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quantum simulator. The goal is to construct a new experimental tool based on a graphene superlattice to not only measuring macroscopic observables, such as electrical resistivity and magnetization, but also
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to: • The design, synthesis and characterization of finely tuned graphene quantum dots (GQDs) and/or GQDs hybrid materials as visible-light-active photocatalysts. • The selective photocatalytic oxidation of 5-HMF