Sort by
Refine Your Search
-
Listed
-
Category
-
Country
-
Employer
- Delft University of Technology (TU Delft)
- CNRS
- Forschungszentrum Jülich
- NTNU Norwegian University of Science and Technology
- Curtin University
- Linköping University
- Lulea University of Technology
- University of Warwick
- Aalborg Universitet
- BRGM
- DIFFER
- Eindhoven University of Technology (TU/e)
- Geological Survey of Denmark and Greenland (GEUS)
- ICN2
- Inria, the French national research institute for the digital sciences
- Luleå University of Technology
- Luxembourg Institute of Science and Technology (LIST)
- Max Planck Institute for Chemical Energy Conversion, Mülheim an der Ruhr
- Mälardalen University
- National Institute of Research and Innovation
- Technical University Of Denmark
- The University of Manchester
- UNIVERSIDAD POLITECNICA DE MADRID
- University of Cambridge;
- University of Deusto
- University of Groningen
- University of Göttingen •
- University of Iceland
- University of Nottingham
- 19 more »
- « less
-
Field
-
of DIFFER. Our group develops and applies computational and AI methods to accelerate the discovery of molecules and materials for energy conversion and storage. Within AIM, DIFFER contributes expertise in AI
-
of future sustainable and resilient electric power systems, with particular emphasis on: Flexibility and resilience in electric power systems, Integration of energy storage and renewable power generation
-
high-performance storage systems for the energy transition. In doing so, we encompass a wide range of technologies, from oxide ceramic fuel cells to solid-state batteries, thermal barrier coatings
-
energy storage, all-solid-state refrigeration, and thermal switches. Ferroelectric tunnel junctions, where ferroelectrics are only a few atomic layers thick, can be used as analog memristors, mimicking
-
infrastructure. Prominent examples include energy and transportation networks, which are undergoing a profound transformation driven by renewable energy integration, battery storage, ubiquitous computation and
-
societal challenges originating from the transition towards a more sustainable society and focuses on four areas: DC Systems, Energy Conversion and Storage (DCE&S) Photovoltaic Materials and Devices (PVMD
-
accurate system models and a Digital Twin of a Space Station DC Micro Grid integrating solar generation, battery storage, and power conversion units, enabling performance assessment and stability analysis
-
accelerating the implementation of carbon capture and storage (CCS) technologies worldwide. You will investigate amine-carry over in CO2 produced in CO2 capture. Small impurities will be carried into the gas
-
sustainable society and focuses on four areas: DC Systems, Energy Conversion and Storage (DCE&S) Photovoltaic Materials and Devices (PVMD) High Voltage Technologies (HVT) Intelligent Electrical Power Grids
-
, synthetic biology and materials for energy storage and conversion, our faculty aims to provide solutions to important problems of the 21st century. To that end, we educate innovative students in broad