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pyrolysis carbons into value added graphene(oxide) colloids. Your PhD project is part of a larger collaboration between TU Eindhoven and Shell on sustainability. The overarching goal of this collaboration is
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processing pathways to electro chemically upcycle pyrolysis carbons into value added graphene(oxide) colloids. Your PhD project is part of a larger collaboration between TU Eindhoven and Shell on
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LSPM, CNRS, UPR3407, Sorbonne Paris Nord University | Villetaneuse, le de France | France | 2 days ago
for the synthesis of heterostructures based on hexagonal boron nitride (h-BN) and graphene. This involves continuing the development of a process for material deposition by microplasmas (characteristic size less than
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of multi-scale composites using graphene/nanoparticles reinforcement in glass/carbon epoxy composites to increase the delamination resistance. Graphene/nanoparticles, due to its nano dimension, can reinforce
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cells. Compared to classical photothermal agents as gold nanoparticles or graphene, magnetic nanoparticles are biodegradable. Photosensitizers and magnetic nanoparticles are assembled in a single
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Devices (AEMD) group focuses on the material sciences and technology aspects of novel electronic materials, with a strong emphasis on graphene as well as other 2D materials (MoS2). The group also works
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Materials performing research on two-dimensional materials and spintronics, as well as with the world-leading company on van der Waals materials growth – HQ Graphene. Founded in 1614, the University
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on the material sciences and technology aspects of novel electronic materials, with a strong emphasis on graphene as well as other 2D materials (MoS2). The group also works towards the development of technological
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Laboratoire Interface Confinement Matériaux et Nanostructures (ICMN) UMR 7374 Université Orléans CNRS | Orleans, Centre | France | 26 days ago
means of structuring (electron beam interaction with precursors adsorbed on the surface of a graphene plane) and as an in situ atomic-scale characterization method, allowing the study of the physical
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synthesis & characterisation followed by neutron scattering experiments to study the details of magnetic structures in exotic new 2D materials. 2D materials are the future. Graphene was just the beginning