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Experimental low-temperature physics involving nanofabrication, high pressure measurements, extreme magnetic field and milliKelvin temperature tuning of exotic low dimensional materials with hands
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facility for advanced semiconductor research and development. This is an outstanding opportunity for a chemistry, physics or materials science graduate to be part of the semiconductor for net zero revolution
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science, assistance through to VR technology. Integration of advanced electronics into woven fabric structures will greatly improve bio-mechanical compatibility and remove unnecessary restrictions, weight
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: NanoporousMaterial Synthesis (MOFs, COFs, zeolites, polymer, silica), Crystallography, Spectroscopy Physics: Nanofluidics (nanoscale water), Molecular Dynamics, Thermodynamics Materials: Colloids, Gel, Polymer
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interest in sustainability. Your academic background can be physical chemistry, materials engineering, chemical engineering, or physical sciences. All applicants must meet the minimum English language
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relevance. We will consider candidates with various research backgrounds including engineering, chemistry and material science. Applicants are required to have a PhD or be close to obtaining a PhD and have
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engineering, eager to tackle industrially-relevant problems. Ideally, you will have a first degree in materials and/or metallurgy, but candidates with degrees in related disciplines will also be considered
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-selective membrane. For example, TiO2-coated LiFePO4 electrode material combined with a pulse electrochemical method was used to adsorb lithium ions from seawater (Joule 2020, 4, 1459.). However, the
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Lui Entry requirements: Applicants should have or expect to achieve at least a 2:1 Honours degree (or equivalent) in Physics, Engineering, or a related subject. A relevant master’s degree or work
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are aimed at sustainability and decreasing environmental impact. Join us and become an expert in materials characterization for critical engineering components, making a significant contribution to both