37 results on '"Agthe, Michael"'
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2. Power Density Titration of Reversible Photoisomerization of a Fluorescent Protein Chromophore in the Presence of Thermally Driven Barrier Crossing Shown by Quantitative Millisecond Serial Synchrotron X-ray Crystallography
3. A small step towards an important goal: fragment screen of the c‐di‐AMP‐synthesizing enzyme CdaA.
4. Liquid application method for time-resolved analyses by serial synchrotron crystallography
5. Mechanisms of inward transmembrane proton translocation
6. Temporal Evolution of Superlattice Contraction and Defect-Induced Strain Anisotropy in Mesocrystals during Nanocube Self-Assembly
7. Temporal Evolution of Superlattice Contraction and Defect-Induced Strain Anisotropy in Mesocrystals during Nanocube Self-Assembly
8. TREXX: a new endstation for serial time-resolved crystallography at PETRA III
9. Liquid application method for time-resolved analyses (LAMA) by serial synchrotron crystallography
10. P14 T-REXX: first results from the Jurassic beamline
11. Inducing nematic ordering of cellulose nanofibers using osmotic dehydration
12. Assembly of cellulose nanocrystals in a levitating drop probed by time-resolved small angle X-ray scattering
13. Nanoscale Assembly of Cellulose Nanocrystals during Drying and Redispersion
14. Time-resolved viscoelastic properties of self-assembling iron oxide nanocube superlattices probed by quartz crystal microbalance with dissipation monitoring
15. Inducing Nematic Ordering of Cellulose Nanofibers using Osmotic Dehydration
16. Time-resolved viscoelastic properties of self-assembling iron oxide nanocube superlattices probed by quartz crystal microbalance with dissipation monitoring
17. Nanoscale Assembly of Cellulose Nanocrystals during Drying and Redispersion
18. Assembly of cellulose nanocrystals in a levitating drop probed by time-resolved small angle X-ray scattering
19. Following the Assembly of Iron Oxide Nanocubes by Video Microscopy and Quartz Crystal Microbalance with Dissipation Monitoring
20. Crystallization on the Mesoscale : Self-Assembly of Iron Oxide Nanocubes into Mesocrystals
21. Following the Assembly of Iron Oxide Nanocubes by Video Microscopy and Quartz Crystal Microbalance with Dissipation Monitoring
22. Following in Real Time the Two-Step Assembly of Nanoparticles into Mesocrystals in Levitating Drops
23. Following in Real Time the Two-Step Assembly of Nanoparticles into Mesocrystals in Levitating Drops
24. Rod packing in chiral nematic cellulose nanocrystal dispersions studied by small angle X-ray scattering and laser diffraction
25. Rod Packing in Chiral Nematic Cellulose Nanocrystal Dispersions Studied by Small-Angle X-ray Scattering and Laser Diffraction
26. Controlling Orientational and Translational Order of Iron Oxide Nanocubes by Assembly in Nanofluidic Containers
27. Controlling Orientational and Translational Order of Iron Oxide Nanocubes by Assembly in Nanofluidic Containers
28. Rare Earth Oxide Nanopowder (RE = Nd, Eu, Gd, Ho, Y, Yb) by Combustion Synthesis, Sulfation and Calcination : Role of the Initial Structure
29. Rod Packing in Chiral Nematic Cellulose Nanocrystal Dispersions Studied by Small-Angle X-ray Scattering and Laser Diffraction
30. Precise control over shape and size of iron oxide nanocrystals suitable for assembly into ordered particle arrays
31. Dynamic growth modes of ordered arrays and mesocrystals during drop-casting of iron oxide nanocubes
32. Precise control over shape and size of iron oxide nanocrystals suitable for assembly into ordered particle arrays
33. Dynamic growth modes of ordered arrays and mesocrystals during drop-casting of iron oxide nanocubes
34. Temporal Evolution of Superlattice Contraction and Defect-Induced Strain Anisotropy in Mesocrystals During Nanocube Self-Assembly
35. Following the mesocrystal growth of self-assembling iron oxide nanocubes by video microscopy and quartz crystal microbalance with dissipation monitoring
36. Inducing nematic ordering of cellulose nanofibers using osmotic dehydration.
37. Following the Assembly of Iron Oxide Nanocubes by Video Microscopy and Quartz Crystal Microbalance with Dissipation Monitoring.
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