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project, which aims to explore the potential of paramagnetic complexes as solid-state quantum bits (qubits) for quantum information processing. In order to measure properties at the single-molecule scale
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or mapping single molecules within tissues for biomedical applications we want to hear from you. Join our interdisciplinary group as a postdoctoral researcher at Karolinska Institutet and help us transform
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molecular metal catalysts for the synthesis of polycarbonates from CO₂ and bio-sourced molecules. Organic and organometallic synthesis Physicochemical characterization Catalytic testing The recruited
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of Chemistry and Biochemistry at The Ohio State University. The postdoctoral researcher will perform independent experiments in single-molecule and single-particle optical spectroscopy, centered around the
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, and conformational changes essential for biological research, drug discovery, and medical diagnostics. Single-molecule detection technologies (SMDTs) have revolutionised the field by offering
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preclinical models. Applying advanced molecular and cellular techniques, such as bulk and single-cell RNA sequencing, spatial transcriptomics, immunohistochemistry, immunoprecipitation, RNA-pull down, ChIP-seq
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.: CAR-T, Virotherapy, BiTEs). We aim to use small DNA molecules to cleave target sequences and thereby improve anti tumor immunity. Experience in immunology, tumor biology, molecular biology, and delivery
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of bacteria to generate sustainable cell factories. The project aims to develop a high efficiency technology that converts single-carbon feedstocks directly into valuable chemicals. To this end
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-performance adsorption but also catalytic breakdown of these resilient pollutants. Two structurally distinct MOF systems will be developed, each offering different pore architectures and functional groups
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—the most abundant natural source of aromatic molecules—is central to the development of a sustainable, bio-based future. Despite its availability, lignin remains one of the most underutilized biopolymers