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We have 63 Energy Technologies (physical) PhD Projects, Programmes & Scholarships

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Energy Technologies (physical) PhD Projects, Programmes & Scholarships

We have 63 Energy Technologies (physical) PhD Projects, Programmes & Scholarships

Gravity separation of emulsions. Collisions of droplets

Supervisory Team.   Dr Anatoliy Vorobev. Project description. The separation of colloidal systems under the influence of gravity is a physical phenomenon encountered in a myriad of industrial processes throughout the food, chemical, petroleum, and hydrometallurgical industries. Read more

Efficient manoeuvres for vortex-foil interactions

Supervisory Team.   Bharathram Ganapathisubramani and Sergio Araujo-Estrada. Project description. In recent years, aerial and underwater autonomous vehicles have seen significant growth. Read more

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

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

New materials for solar cells

We have a vacancy for a PhD student to work on the synthesis and characterisation of new materials for solar cells. Hybrid lead halide perovskites are attracting considerable interest due to their potential as photovoltaic materials for solar cells with very high efficiencies. Read more

Harnessing waste-heat from challenging environments with flexible electronics, sponsored by BAE Systems

Supervisory Team. Dr Katrina Morgan, Dr Ioannis Zeimpekis, Prof Nick Harris, Prof Steve Beeby. Project description. This PhD is a sought after industrial Cooperative Award in Science and Techology (iCASE), with sponsorship from BAE Systems Ltd. Read more

Numerical models for a new combustion era

Hydrogen will be, among the synthetic fuels, the preferable energy carrier able to address the spatial and temporal separation between energy production (renewable source) and consumption. Read more

Wearable Thermoelectric Generators Using Advanced Materials

Supervisory Team: Dr Katrina Morgan, Dr Ioannis Zeimpekis . Project description. Wearable technologies are revolutionising our daily lives, integrating everyday objects into our clothes, accessories and even our bodies. Read more

Lead-free materials for electrostatic energy storage

  Research Group: School of Chemical and Process Engineering
This multidisciplinary project spans materials science, chemistry and physics to develop lead-free environmental friendly materials for enhanced electrostatic energy storage. Read more

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