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We have 8 Energy Technologies (functional) PhD Projects, Programmes & Scholarships

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Energy Technologies (functional) PhD Projects, Programmes & Scholarships

We have 8 Energy Technologies (functional) PhD Projects, Programmes & Scholarships

Droplet Impacts with Functional Surfaces

These projects are open to students worldwide, but have no funding attached. Therefore, the successful applicant will be expected to fund tuition fees at the relevant level (home or international) and any applicable additional research costs. Read more

Functional composites through hybridisation PhD

Advanced continuous carbon fibre reinforced polymer composites, offer a very attractive combination of mechanical properties, environmental resistance and lightweight which make them a superior choice for high performance applications. Read more

Vapour Deposited Perovskites for High Performance Multi-Junction Photovoltaic Devices

Metal-halide perovskite based solar cells have now achieved a light to electricity conversion efficiency of 26.1%, making them the leading emerging thin-film solar cell material. Read more

Three-dimensional hybrid composites for repair and recycling PhD

This PhD research opportunity focuses on the development of self-healing three-dimensional metal-composite hybrid materials. These will use through-thickness reinforcement to embed metallic elements, acting as a means of targeted heat introduction, to activate re-processable matrices like thermoplastics or vitrimers. Read more

Multi-material metal 3D Printing for compact, lightweight heat exchangers for high power thermal management (Studentship I)

Supervisors. Dr. Luke Parry, Dr. Vitor Marques (Industrial Supervisor). About the Project. The project is to contribute to a major Ministry of Defence (MOD) research programme intended to develop generation after next technologies for applications in defence and security, and this project will be co-funded by Leonardo. Read more

Nanocellulose as a Sustainable Electrolyte for Electrochemical Energy Conversion

The Hydrogen Economy will help to shift society away from fossil fuels and contribute to decarbonisation. Polymer electrolyte membrane water electrolysis (PEMWE) can convert renewable energy into green hydrogen, whilst polymer electrolyte membrane fuel cells (PEMFCs) convert hydrogen into electrical power. Read more

Development of Stretchable Conductive Layers For Wearable Devices

Flexible and wearable electronic devices require the development of, highly conductive , mechanically, electrochemically stable (against oxidation/reduction with various fluids), weightless and a sustainable (recyclable and biocompatible materials), and conductive electrodes. Read more
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