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revitalization, organoid engineering; AI-driven biomedical analytics for cell lineage modeling, drug discovery & design and biomedical imaging analysis; Disease mechanisms with emphasis in cancer, immunology
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Materials and Devices (AEMD) group focuses on the material sciences and technology aspects of novel electronic materials, with a strong emphasis on graphene as well as other 2D materials (MoS2). The group
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problems in human health with cutting edge technology and through inter-disciplinary collaborations with world-class scientists and physicians in Beijing. CIMR will provide education and training
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that these nanocrystals undergo under diverse conditions. By mastering precise structural control and tailored surface engineering, the group seeks to optimize nanoparticle performance across critical application areas
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underlying human disease. The team brings together diverse expertise, ranging from work with mutant stem cell-derived beta cell organoids, engineered mouse models, single cell epigenomics, large-scale genetic
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nanoscience and nanotechnology is facilitated under the EU-funded NEP project. The project provides free access to a wide portfolio of services to users and support excellence of science and technology while
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. The postdoctoral candidate will have the opportunity to work in a vibrant project at the intersection of materials science, electrochemistry, optoelectronics, and engineering, as well as utilize state-of-the-art
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ICFO is offering postdoctoral positions to well-qualified, highly motivated and dynamic young scientists who wish to enhance their scientific career in a friendly and stimulating environment. The successful candidate will be joining the international QTWIST program that includes Prof....
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lasers based on colloidal quantum dot technology. The aim is to develop the first chip-integrated infrared quantum dot laser emitting in the telecom wavelength regime as well as in longer wavelengths
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to develop highly performant, CMOS compatible, thermal sensor and microbolometer technology. The project aims to revolutionize thermal imaging technologies for automotive, safety and surveillance by developing