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through interdisciplinary research. With state-of-the-art facilities, a collaborative environment, and a stunning location by the Red Sea, KAUST provides an exceptional setting for innovation and discovery
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highly desirable. We seek a postdoctoral researcher to develop novel SWIR and exploratory room-temperature MWIR photodetectors based on CQDs. The position focuses on device architecture design, charge
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are encouraged to apply; applicants bridging both areas are especially welcome. Key Responsibilities: · Design and perform experimental studies to evaluate the thermal stability, abuse tolerance, and safety limits
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topics. Candidates should have some experience working with FPGAs as well as an understanding of computer networks. Experience with both RTL and HLS design is favoured. The ideal candidate would have some
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expertise in testing interfaces at the low scale with applications to the energy sector, such as photovoltaic and/or piping systems. Responsibilities: Develop innovative in-situ testing facilities
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a single working environment. OUR MISSION: Support Energy transition by providing innovative composite solutions or optimizing the usage of existing solutions in demanding Energy and Mobility
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goals and our industrial partner's milestones. Design and execute rigorous experiments on: Bulk and interfacial rheology Nonlinear viscoelastic behavior Extensional and shear flow dynamics relevant
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environment. OUR MISSION: Support Energy transition by providing innovative composite solutions or optimizing the usage of existing solutions in demanding Energy and Mobility applications. Our laboratory
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optical, electronic, and photodetector properties. Responsibilities Synthesize III–V CQDs using air-free colloidal methods. Design and optimize precursor chemistry for InAs-, InSb-, Ag₂Te-, and PbSe/PbS
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spectroscopy, and PPMS. Use cleanroom nanofabrication processes to build 2D-material-based electronic devices. Design, execute, and troubleshoot experiments. Publish research findings in high-impact journals and