Qualification Type: | PhD |
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Location: | Loughborough |
Funding for: | UK Students, EU Students, International Students |
Funding amount: | £19,237 per annum. Fully Funded |
Hours: | Full Time |
Placed On: | 19th November 2024 |
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Closes: | 1st April 2025 |
Reference: | LU-EnerHy 2024-5 |
Application deadline
Applications will be reviewed at the start of each month for shortlisting.
Project details
The goal of this project is to develop a range of low-cost high-performance catalysts and electrodes for large scale green hydrogen production from water and seawater electrolysis, powered by renewable energy. Particularly we will develop alternative transitional metal-based catalysts for water splitting that includes both hydrogen evolution reaction and oxygen evolution reaction, with high activity and long stability under practical operation conditions.
To enable efficient water and seawater electrolysis as a main route to make green hydrogen affordable at scale for our sustainable net-zero future, both the capital cost of the electrolyser and the running cost of the electrolysis need to be reduced significantly.
This project will research novel catalytic materials and interface engineering to reduce the noble metal loading whilst maintaining and even enhancing long-term stability; and the reduction of running costs will be achieved through more efficient catalyst and electrode structure, to improve kinetic reaction, transport charge and mass transport, and thus to minimize the overpotential loss, i.e., to reduce the electricity use by minimizing waste heat from the electrolyser.
Applications will be reviewed at the start of each month for shortlisting and successful applicants invited to interview.
Please visit this project on the EnerHy CDT website where you will find details on submitting an application at the bottom of the page.
Funding Details
The studentship is for 4 years full-time or 8 years part-time and provides a tax-free stipend of £19,237 per annum (full-time) for the duration of the studentship.
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