
Institut Laue
Articles
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Oct 2, 2024 |
journals.iucr.org | Basque Research |Institut Laue
FullProfAPP is a software tool for data processing, refinement and visualization of large collections of powder diffraction patterns. Featuring an intuitive graphical user interface, it seamlessly facilitates a variety of tasks. These include conducting full-profile phase searches, sequential and high-throughput Rietveld refinements, and managing background (and peak) detection.
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Aug 27, 2024 |
onlinelibrary.wiley.com | Institut Laue |Heinz Maier-Leibnitz Zentrum |Technische Universität München
Small-angle neutron scattering (SANS) is a widely used technique to study bulk samples with length scales in the range of 10–1000 nm. The isotope specificity of neutrons and their ability to interact with magnetic spins make SANS a powerful tool to determine the size and shape of structures in fields ranging from biology (Jeffries et al., 2021) to magnetism and superconductivity (Mühlbauer et al., 2019).
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Aug 27, 2024 |
onlinelibrary.wiley.com | Institut Laue |RWTH Aachen
more ... more ... JOURNAL OFAPPLIEDCRYSTALLOGRAPHY ISSN: 1600-5767 Volume 57| Part 5| October 2024| The promise of GaAs 200 in small-angle neutron scattering for higher resolution A. Magerl,a,b* H. Lemmel,c,d M. Appel,d M. Weisser,e U. Kretzerf and M.
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Jun 20, 2024 |
onlinelibrary.wiley.com | Lucrezia Caselli |Samantha Micciulla |Institut Laue |Tanja Traini
1 Introduction Photocatalytic nanoparticles are promising systems in the fight against bacterial infections, as they may be designed to potently suppress a wide spectrum of bacteria in both planktonic and biofilm states, including strains resistant to conventional antibiotics.[1-4] Antimicrobial effects of photocatalytic nanoparticles are related to the generation of free electrons and holes under illumination, which react with water and dissolved oxygen (as well as other solutes) to form...
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Oct 11, 2023 |
onlinelibrary.wiley.com | Forschungszentrum Jülich |RWTH Aachen |Heinz Maier-Leibnitz Zentrum |Institut Laue
The sample preparation is described by Eich et al. (2021). Neutron single-crystal diffraction at low temperatures and high pressures was performed using a TiZr clamp cell (03PCL150TZ5) on the beamline D9 at the Institut Laue–Langevin (ILL, Grenoble, France). The sample was an as-grown CrAs single crystal that was cut to the length of 3 mm along its growth a axis and had a final size of 3 × 2 × 2 mm.
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