Sort by
Refine Your Search
-
) bacteria and biofilms. This project aims to create a new generation of injectable therapeutic hydrogels that combine beneficial probiotics and bacteriophages to simultaneously eradicate bacterial infections
-
intervention procedures that can help reduce maintenance costs and increase circularity over the life cycle of a structure. The SURPASS solutions combine eco-efficient UHPFRC containing CO2-negative SCMs, bio
-
. Combining expertise in nanomaterials, colloid and analytical science, cellular biology and bioengineering, we investigate how nanoparticle structure and composition influence biological function. A particular
-
. The project endeavours to develop intervention procedures that can help reduce maintenance costs and increase circularity over the life cycle of a structure. The SURPASS solutions combine eco-efficient UHPFRC
-
, and downstream tasks. The position combines Empa UESL’s expertise in developing and accessing energy system models with the methodological expertise of the IMOS Laboratory in machine learning and
-
scalable, solvent-free processing. Material combinations will be validated in lab-scale flow batteries, benefiting from the characterization capabilities available at Empa. The position is embedded in
-
. The position combines Empa UESL’s expertise in developing and accessing energy system models with the methodological expertise of the IMOS Laboratory in machine learning and foundation models. Postdoctoral
-
processing. Material combinations will be validated in lab-scale flow batteries, benefiting from the characterization capabilities available at Empa. The position is embedded in the Horizon Europe project
-
. Empa is a research institution of the ETH Domain. Empa’s Laboratory for High Performance Ceramics addresses fundamental questions in electrochemical energy conversion and storage by combining advanced
-
integration. Your tasks The student will commission and operate a dedicated UHV dry-transfer platform and assemble graphene/GNR heterostructures combining atomically precise nanoribbons with graphene electrodes