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We have 26 Energy Technologies (motivation) PhD Projects, Programmes & Scholarships

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Energy Technologies (motivation) PhD Projects, Programmes & Scholarships

We have 26 Energy Technologies (motivation) PhD Projects, Programmes & Scholarships

Soft Flexible and Stretchable Energy Storage Device Development

Hybrid energy storage offers multiple advantages in electrochemical energy storage especially for portable electronic gadgets and autonomous systems due to its high energy and power density. 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

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

Membrane-less Redox Flow Batteries

This project will focus on the development of membrane-less redox flow battery systems for grid-scale energy storage. We will use novel aqueous electrolytes and new types of cell chemistries as well as “bespoke” systems based on organic molecules. Read more
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Numerical modelling of multiphase flow and reactive transport in porous materials

Understanding reactive transport in porous materials is of utmost importance for a wide range of engineering applications, including subsurface energy storage, low-carbon building materials and fuel cells. Read more

Novel 2D-crystals for the hydrogen economy

Graphene represents a conceptually new and large class of materials that are one or a just few atoms thick. These materials are completely impermeable to all gases at ambient conditions, but, unexpectedly, some are highly permeable to protons, nuclei of hydrogen atoms. Read more

Modelling of microbial induced hydrogen loss for underground hydrogen storage

Hydrogen is identified to play a key role in the UK’s goal of achieving net zero emissions by 2050. To meet this target, the UK needs hydrogen storage capacity of at least 15 TWh (~ 450k tonnes) meet short-term and seasonal supply and demand variability. Read more

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