Search for dissertations about: "non-covalent interaction"
Showing result 11 - 15 of 26 swedish dissertations containing the words non-covalent interaction.
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11. Controlling function by structure-intermolecular interactions and crystal engineering with N-donor ligands
Abstract : In the solid state regime, crystal engineering based on non-covalent synthesis requires an intuition about the intermolecular forces that can dictate the molecular architecture. Hydrogen bonds have become an instrumental tool in the self assembly and supramolecular chemistry. READ MORE
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12. Hydrogels of conjugated polyelectrolytes for biosensor and biochip applications
Abstract : This thesis describes the use of conjugated polyelectrolytes (CPEs) in biosensor devices. The method is based on non-covalent assembly of the biomolecule of interest and the CPE functioning as the reporter, in one case as a transducer, of biomolecular events. READ MORE
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13. The Role of Membrane Trafficking in G Protein-Coupled Receptor Regulation
Abstract : Movements of a receptor in the plasma membrane and within the cell influence receptor function and physiology. I have investigated the role of such movements, generally known as membrane trafficking, in G protein-coupled receptor regulation. READ MORE
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14. Fast Dynamic Processes in Solution Studied by NMR Spectroscopy
Abstract : Nuclear magnetic resonance (NMR) spectroscopy is capable to deliver a detailed information about the dynamics on molecular level in a wide range of time scales, especially if accompanied by suitably chosen theoretical tools. In this work, we employed a set of high-resolution NMR techniques to investigate dynamics processes in several weakly interacting molecular systems in solution. READ MORE
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15. Conjugated polyelectrolytes : conformation sensitive optical probes for the recording of biological processes
Abstract : The physical properties of conjugated polymers can be utilized for a wide range of biosensors. For instance, the conformational flexibility fouud in conjugated polyelectrolytes, allows direct connection between the geometry of chains and the resulting electronic structure and optical processes, since the extension of the π-conjugated system is distorted by conformational changes of the polyelectrolyte backbone. READ MORE