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We have 31 Energy Technologies (cells) PhD Projects, Programmes & Scholarships

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Energy Technologies (cells) PhD Projects, Programmes & Scholarships

We have 31 Energy Technologies (cells) PhD Projects, Programmes & Scholarships

Atomic Layer Deposition of Novel Nanolayer Materials for Solar Cells

Project Description. Solar photovoltaics (PV) has emerged as THE breakthrough technology which will underpin the coming clean energy transition and allow us to address the epochal challenge of climate change. Read more

Sustainable Carbon Nanomaterials for Electrochemical Energy Conversion in Hydrogen Fuel Cells

The Hydrogen Economy will help to shift society away from fossil fuels and contribute to decarbonisation. Electrochemical processes are at the heart of the hydrogen economy providing a means to convert renewable energy into green hydrogen via electrolysis or converting hydrogen into electrical power using fuel cells. Read more

Hydrogen degradation in silicon solar cells and modules

Hydrogen is everywhere and it is degrading our solar cells and modules! We need people to help us work out how and why. Please get in contact if you are interested in a PhD to help us solve this challenge using any or all of. 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

Stability and efficiency improvement of perovskite solar cells by controlling synthesis and deposition processing parameters

Organic–inorganic hybrid metal halide perovskite solar cells (PSCs) have gained extensive research interest in the last decade due to their low-cost fabrication, excellent optoelectronic properties, and rapid increase in power conversion efficiency. 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
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Holistic understanding of optimal lithium-ion battery fast charging

Lithium-ion batteries are the technology of choice for electric vehicles and other battery powered applications, with the ability to fast charge becoming increasingly important. Read more

Thermo-electric materials for tab cooling of advanced batteries

Supervisory Team.   Prof Richard Wills, Dr Iris Nandhakumar. Project description. Effective thermal management of lithium-based battery systems is important for optimising cell efficiency, reducing cell degradation and preventing catastrophic failure. Read more

Energy Storage Modelling

Supervisory Team.   Prof Andrew Cruden, Prof Richard Wills, Prof Suleiman Sharkh. Project description. Applications are invited for a fully-funded PhD studentship to investigate the electrical, thermal and economic modelling of a range of electrical energy storage types (e.g. Read more

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