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We have 20 Energy Technologies (structural) PhD Projects, Programmes & Scholarships for Self-funded Students

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Energy Technologies (structural) PhD Projects, Programmes & Scholarships for Self-funded Students

We have 20 Energy Technologies (structural) PhD Projects, Programmes & Scholarships for Self-funded Students

Enhancing the performance, condition, safety and reliability of offshore wind energy infrastructure systems using optimal inspections and structural health monitoring

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

Understanding performance of austenitic stainless steels impure Helium environment for High-Temperature Gas Reactors (HTGR)

This innovative PhD project, conducted in collaboration with EDF Energy, invites a passionate and dedicated researcher to join a transformative exploration at the forefront of materials science, making meaningful contributions to the future of energy technology. Read more

Hydrogen trapping and permeation in metallic and ceramic coatings for fusion powerplant applications

  Research Group: Coatings and Ceramics
Future fusion powerplants must maintain tritium inventory to ensure safe and sustainable plant operations. Structural materials in the breeder blanket and tritium extraction systems will be exposed to tritium and lithium. Read more

The X-Rotor Offshore Wind Turbine Concept Development

PhD in the Engineering Hydrogen NetZero (EnerHy) CDT which is a new EPSRC-funded Centre for Doctoral Training (CDT) focusing on research and training in the areas of Hydrogen and Wind Energy. 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

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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