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crucial. Proficiency in English communication, both written and spoken, is mandatory. Experience in fabricating small-angle twisted graphene is beneficial. We regret that only shortlisted candidates will be
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Dr Avsar ([email protected]). Our National Research Foundation supported group has a ~ 100 m2 lab space with a full access to a clean room facility at the Graphene Research Centre (CA2DM) dedicated
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Avsar ([email protected]). Our National Research Foundation supported group has a ~ 100 m2 lab space with a full access to a clean room facility at the Graphene Research Centre (CA2DM) dedicated to 2D
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Heterostructures) from 2D materials including graphene, black phosphorus, hexagonal-boron nitride and transition metal dichalcogenides. The CERC Fellow will develop nanofabrication techniques to produce and
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. Conducting high impact research in (1) nanoscale engineering of 3D graphene foam and its supercapacitor application under extreme working conditions which battery cannot cover. New applications in extreme
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superlattices, such as twisted multilayer graphene, TMDC, and 2D superconductors. The successful candidate will contribute to cutting-edge research in the field of two-dimensional materials, with a specific
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Dame Kathleen Ollerenshaw (DKO) Fellowship (University of Manchester at Harwell) (2 Posts Available)
on our tradition of success that stretches back 200 years. The birth of the modern computer, the splitting of the atom, the founding principles of modern economics, the discovery of graphene, and the
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will be functionalized with chemical functions to create suitable adsorption sites for CO2. Graphene, graphene oxide and related substrates as well as silicon oxide-based surfaces will be investigated as
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manufacturing research. Our capabilities are unique, with a focus on simulation and modelling, and sustainability. They also include work in composite manufacture, metallic glasses, nanomaterials (graphene
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chemical functions to create suitable adsorption sites for CO2. Graphene, graphene oxide and related substrates as well as silicon oxide-based surfaces will be investigated as supports