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nitrides. You will use synchronized HiPIMS processes to tune the properties and performance of the films. The experiments will be informed by in-situ surface and interface analysis. Your work will make use
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synchronized HiPIMS processes to tune the properties and performance of the films. The experiments will be informed by in-situ surface and interface analysis. Your work will make use of our group's unique
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enhancement of near-infrared (NIR)-emitting organic light-emitting devices (OLEDs) and to advance the understanding and performance of next-generation NIR optoelectronic devices.You will become part of a strong
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enhancement of near-infrared (NIR)-emitting organic light-emitting devices (OLEDs) and to advance the understanding and performance of next-generation NIR optoelectronic devices.You will become part of a strong
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. The performance of such batteries hinges on the solid booster formulation, morphology, and the efficiency of charge transfer between mediator and solid under continuous flow. Your tasks Your task is to develop
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, decoupling energy density from active-material solubility while preserving the modularity and safety of aqueous flow batteries. The performance of such batteries hinges on the solid booster formulation
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heat stress and improve thermal safety, comfort, and performance in challenging environments. Your tasks Your task will be Develop, adapt, and validate experimental and computational methods
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. Empa is a research institution of the ETH Domain. The Nanomaterials in Health Lab is a truly interdisciplinary environment that conducts pioneered investigations on particle bio-functionalization
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conducts pioneered investigations on particle bio-functionalization, particles uptake, accumulation, translocation across biological barriers and their bio-responses. With this we provide key contributions
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. 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