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More publications
- Effects of sintering additives on defect chemistry and hydration of BaZr0.4Ce0.4(Y,Yb)0.2O3−δ proton conducting electrolytes
- A brick layer model for surface conduction in porous ceramics
- Tubular protonic ceramic electrolysis cells and direct hydrogen compression
- Thermo-fluid dynamics modelling of steam electrolysis in fully-assembled tubular high-temperature proton-conducting cells Read publication
- Surface protonic conductivity in chemisorbed water in porous nanoscopic CeO2 Read publication
- On the mechanism of Mn(II)-doping in Scandia stabilized zirconia electrolytes Read publication
- B-site cation inter-diffusion in yttrium substituted barium zirconate Read publication
- Electrochemically driven degradation of chemical solution deposited ferroelectric thin-films in humid ambient Read publication
- Hydrogen from wet air and sunlight in a tandem photoelectrochemical cell Read publication
- The influence of acceptor and donor doping on the protonic surface conduction of TiO2
Other
- Direct Production of Pressurized Hydrogen using Tubular Proton Ceramic Electrolysers
- Oxygen Exchange Kinetics of BaGd0.3La0.7Co2O6-d
- Ceramic membrane reactors for the electrocatalytic conversion of CO2 into chemical energy carriers
- Fuel Cells for Reducing Emissions from the Petroleum Industry: Experience from Work in the LowEmission Research Centre
- Mn(II)-doped scandia stabilized zirconia electrolyte: materials, cells and stack performance
- Development of surface protonic fuel cells
- Double perovskite mixed conductors – Hydration, red-ox, structure and stability
- Oxygen Exchange Kinetics of BaGd0.3La0.7Co2O6-d Steam Electrodes for Proton Ceramic Electrochemical Cells
- A discussion on the electrochemistry of PCEC electrodes
- Chemical Stability of Proton Conducting BaZr1-xCexO3-Based Electrolytes in Pressurized CO2-Containing Atmospheres