de
en
Schliessen
Detailsuche
Bibliotheken
Projekt
Impressum
Datenschutz
zum Inhalt
Detailsuche
Schnellsuche:
OK
Ergebnisliste
Titel
Titel
Inhalt
Inhalt
Seite
Seite
Im Dokument suchen
Rahmann, Hendrik: Realization of low dose XPCS experiments for the investigation of protein dynamics. 2020
Inhalt
Contents
Abstract
Zusammenfassung
Introduction
Theoretical Background of X-ray Scattering Techniques
Basics of X-ray Scattering
Small Angle X-ray Scattering (SAXS)
Coherent X-ray Scattering
X-ray Photon Correlation Spectroscopy (XPCS)
Signal-to-noise ratio of XPCS experiments
Radiation damage
Interaction of X-rays and matter and X-ray absorption
Radiation damage regarding biological samples
Reducing radiation damage effects
Protein interactions and phase transitions
Biomolecular crowding and biocondensates
Intermolecular interactions in protein solutions
Thermodynamic fundamentals of phase transitions
Spinodal decomposition and Cahn-Hilliard equation
Arrested State and Glass Transition
IgG-PEG model system
Experimental setup and sample environment
PETRA III synchrotron at DESY
The P10 Coherence Applications Beamline
The USAXS setup
The SAXS setup
Data treatment using Eiger 4M detector
IgG sample preparation
IgG sample measurement protocol
USAXS-XPCS measurements
SAXS-XPCS measurements
Data Analysis and Discussion
Raw data preparation
Radiation damage to IgG proteins
Radiation damage measurements in USAXS setup
Radiation damage measurements in SAXS setup
USAXS analysis of the quenched IgG model system
Kinetics
Aging dynamics at small q
USAXS data discussion
SAXS data
SAXS data discussion
Conclusion and Outlook
Appendix
Bibliography
Acknowledgement