
Ammonia is a carbon-free fuel with high hydrogen content, easy storage, and established global transport infrastructure, making it a strong candidate for decarbonising hard-to-abate sectors. Its use is particularly attractive in maritime and stationary power applications, where low-carbon alternatives to conventional fuels are urgently needed.
Direct ammonia solid oxide fuel cells (NH3-SOFCs) offer an efficient pathway to convert ammonia directly into electricity without external reforming. However, conventional nickel-based anodes degrade under ammonia due to nitrogen poisoning. Novel oxide/oxynitride phases are promising alternatives, offering mixed ionic-electronic conductivity, high catalytic activity, and structural stability. This project aims to develop and evaluate novel anode materials for NH3-SOFCs, targeting catalytic performance, durability, and operational stability to support maritime and onshore ammonia power systems.
NH3-SOFC programme is hiring a highly motivated Material Chemistry and Synthesis research intern with a strong interest in experimental materials science, particularly in energy technologies and electrochemistry, to explore novel material systems with applications for NH3-SOFC. The candidate should demonstrate rigor, initiative, and teamwork skills, as well as good interpersonal abilities.
You will participate in the synthesis, structural characterisation, and performance evaluation of double-layer perovskites. A key part of the role is preparing targeted materials using such as the solid state and sol-gel methods and performing structural analysis.
Requirements:
Main Duties:
Duration: 3-9 months
Stipend: $1,500 per month
Informal enquiries are greatly welcome and can be directed to Dr Zonghao Shen (zonghao.shen12@imperial.ac.uk).
Questions about the recruitment process, should go to the HR at Imperial Global Singapore hrigsingapore@imperial.ac.uk.

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