1. |
| Cowan, Professor AJ | University of Liverpool | Water dissociation interfaces for high current density bipolar membrane electrolysers | 249,821 |
2. |
| Kucernak, Professor A | Imperial College London | Anion exchange membrane water electrolysis for low-cost green hydrogen production (AEM-H2) | 249,433 |
3. |
| Banks, Professor CE | Manchester Metropolitan University | Additive Manufacturing Complete Water Splitting Devices: A Pathway to Scalable Zero Emission Hydrogen Production (Additive-H2) | 252,330 |
4. |
| Walton, Dr A S O | University of Manchester, The | High Entropy Sulfides as Corrosion Resistant Electrocatalysts for the Oxygen Evolution Reaction | 252,518 |
5. |
| Skinner, Professor SJ | Imperial College London | Electrosynthetic approaches to hydrogen production for a net zero future encompassing new materials paradigms | 252,386 |
6. |
| Symes, Professor MD | University of Glasgow | Decoupled Electrolysis for the Production of Zero-Carbon Hydrogen | 217,826 |
7. |
| Hankin, Dr A | Imperial College London | Up-scaling solar hydrogen production | 252,670 |
8. |
| Brandon, Professor NP | Imperial College London | Improved hydrogen-steam electrodes for solid oxide electrolysers | 227,505 |
9. |
| Faisal, Professor NH | Robert Gordon University | Scalable metamaterial thermally sprayed catalyst coatings for nuclear reactor high temperature solid oxide steam electrolysis (METASIS) | 240,883 |
10. |
| Ganin, Dr A | University of Glasgow | Supported MoTe2: proving the viability of a 2D material to be employed in the PEM flow cell for the hydrogen production | 246,775 |
11. |
| Fermin, Professor DJ | University of Bristol | DIMENSIONALLY STABLE ELECTRODES FOR SUPERCRITICAL WATER ELECTROLYSIS (SuperH2) | 252,098 |
12. |
| Brett, Professor D | UCL | Advanced Metrology for Polymer Electrolysers - AMPERE | 252,571 |
13. |
| Stephens, Dr I E L | Imperial College London | H2terascale - Improved oxygen evolution catalysis to enable terawatt scale hydrogen production | 252,705 |
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