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2017
Electrochemical energy conversion. Schematic showing electrochemical conversion of water, carbon dioxide, and nitrogen into value-added products (e.g., hydrogen, hydrocarbons, oxygenates, and ammonia), using energy from renewable sources. The combination of theoretical and experimental studies working in concert provides us with insight into these electrochemical transformations and guides the development of the high-performance electrocatalysts needed to enable these technologies.
19 JAN

Electrocatalysis can advance green transition

Renewable energy is providing an increasing share of the energy supply, but to ensure the green transition continues, it must also be able to furnish us with the fuels...

Catalysis Micro and nanotechnology Metals and alloys Nanoparticles Fuel cells Energy storage Fossil fuels Solar energy Wind energy
2015
The ZAS project
27 MAY

Rechargeable zinc-air batteries may be a way to counter energy dependency of fossil...

Storage of energy from renewable energy sources is vital to Europe’s energy policy. DTU Energy and partners use atomic modelling to develop a rechargeable zinc-air...

Energy Nanoparticles Energy efficiency Energy storage
2014
Illustration for TEMOC and ECoProbe
13 OCT

Watching live how fuel cells and electrolysis cells operate at the nanoscale

Researchers at DTU will monitor the reactions and processes in operating fuel cells and electrolysis cells at the nanoscale, observing weak spots as they evolve, making...

Fuel cells Sensors Micro and nanotechnology Physics Nanoparticles Electrochemistry