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Assessing the Functional Structure of Molecular Transporters by EPR Spectroscopy
Details
In his thesis, Matthias Junk takes an innovative approach to assess the local structure and dynamics of biological and synthetic amphiphilic macromolecules capable of transporting small molecules. Replacing the latter with stable radicals, he uses state-of-the-art electron paramagnetic resonance (EPR) spectroscopy to describe the highly relevant transport function from the viewpoint of the guest molecules. Such, he demonstrates that the functional structure of human serum albumin in solution significantly differs from its crystal structure a consequence of the protein's adaptability to host various endogenous compounds and drug molecules. Further, he shows that the thermal collapse of thermoresponsive hydrogels and dendronized polymers leads to static and dynamic heterogeneities on the nanoscale. These heterogeneities bear consequences for the material's hosting properties and enable unforeseen complex catalytic functionalities.
Nominated by Max-Planck-Institute for Polymer Research, Mainz, Germany Innovative approach to assess the topic Delivers remarkable new insights into materials Includes supplementary material: sn.pub/extras
Inhalt
Electron Paramagnetic Resonance Theory.- The Functional Structure of Human Serum Albumin.- Copper Complexes of Star-Shaped Cholic Acid Oligomers with 1,2,3-Triazole Moieties.- Nano-Inhomogeneities in Structure and Reactivity of Thermoresponsive Hydrogels.- Thermoresponsive Spin-Labeled Hydrogels as Separable DNP Polarizing Agents.- Local Nanoscopic Heterogeneities in Thermoresponsive Dendronized Polymers.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783642251344
- Sprache Englisch
- Auflage 2012
- Genre Chemie
- Lesemotiv Verstehen
- Größe H241mm x B160mm x T17mm
- Jahr 2012
- EAN 9783642251344
- Format Fester Einband
- ISBN 364225134X
- Veröffentlichung 05.01.2012
- Titel Assessing the Functional Structure of Molecular Transporters by EPR Spectroscopy
- Autor Matthias J. N. Junk
- Untertitel Springer Theses
- Gewicht 512g
- Herausgeber Springer Berlin Heidelberg
- Anzahl Seiten 228