Department: None
Organisation: Argyll College
A CCP on Wave/Structure Interaction: CCP-WSI
A first principles study of electric double layer capacitors
ARUA CoE in Materials, Energy & Nanotechnology Research.
Addressing self-irradiation damage and its impact on the long-term behaviour of nuclear waste matrices
CCP-WSI+ Collaborative Computational Project on Wave Structure Interaction +
Creating the Energy for Change
Design rules for defect-tolerant photovoltaics
Exploring All-Solid-State Batteries using First-Principles Modelling: Effective Computational Strategies towards Better Batteries
FENGBO-WIND - Farming the ENvironment into the Grid: Big data in Offshore Wind
Femtosecond Optical Probes of Mesoscopic Materials for Photovoltaics
Fundamental Properties of Thoria Based Mixed Oxides
High End Computing Consortium for Wave Structure Interaction HEC WSI
Innovative LWR Simulation Tool for the Nuclear Renaissance in the UK
Instilling Defect-Tolerance in ABZ2 Photovoltaic Materials
Mechanism and Structure of Functional Materials by Solid-state NMR
Nanostructured Functional Materials for Energy Efficient Refrigeration, Energy Harvesting and Production of Hydrogen from Water.
National Facility for High Resolution CL Analysis of Photovoltaic and Optoelectronic Devices
Next generation photovoltaics by nonadiabatic dynamics
Optimization in Fluid Mechanics
Predictive Modelling of the Fundamentals of Failure in Metals
Quantitative non-destructive nanoscale characterisation of advanced materials
Quantum Effects in Electronic Nanodevices (QuEEN)
SPATIO-TEMPORAL BEAM TAILORED FIBRE LASERS FOR ENERGY RESILIENT MANUFACTURING
Sincere: Selective ion-conductive ceramic electrolytes
Singlet Fission in Carotenoid Aggregates (SIFICA)
Singlet fission in polyenes
Stretching the boundaries; new soft matter systems.
Structural evolution across multiple time and length scales
SusTEM Network: Sustainhermal Energy Management Network
Suspended graphene and carbon nanotube device arrays by bottom-up assembly
Taking on the Teenagers - Using Adolescent Energy to Reduce Energy Use
The Solar Chemicals Network
UK Indemand: a National Research Centre for reducing Industrial Energy and Material use in supplying UK needs
UKAEA / EPSRC Fusion Grant 2022/27
Understanding N-doped graphene electrocatalysts through in-situ characterisation
Understanding the memory effect in nickel-based in situ composites
Unravelling the Mechanisms of Self-Cleaning on Superhydrophobic and Liquid-Infused Surfaces
What stabilizes unconventional superconductivity?
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