M
Mahmoud Abdellatief
Researcher at University of Trento
Publications - 20
Citations - 244
Mahmoud Abdellatief is an academic researcher from University of Trento. The author has contributed to research in topics: Chemistry & Hydrogen. The author has an hindex of 7, co-authored 11 publications receiving 181 citations. Previous affiliations of Mahmoud Abdellatief include Elettra Sincrotrone Trieste.
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MCX: a Synchrotron Radiation Beamline for X-ray Diffraction Line Profile Analysis
TL;DR: The potential of modern methods for X-ray diffraction Line Profile Analysis can be fully exploited with data collected at synchro- tron radiation beamlines, provided that optics and experimental set-up are suitably designed and characterized.
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High-temperature and high-pressure behavior of carbonates in the ternary diagram CaCO3-MgCO3-FeCO3
Marco Merlini,Francesca Sapelli,Patrizia Fumagalli,G. Diego Gatta,Paolo Lotti,Paolo Lotti,Simone Tumiati,Mahmoud Abdellatief,Andrea Lausi,Jasper R. Plaisier,Michael Hanfland,Wilson A. Crichton,Julien Chantel,Jérémy Guignard,Carlo Meneghini,Alessandro Pavese,Stefano Poli +16 more
TL;DR: In this article, the thermal expansion and the compressibility of carbonates in the ternary compositional diagram CaCO 3 -Mg CO 3 -FeCO 3, determined by in situ X-ray powder and single-crystal diffraction was reported.
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Debye–Waller coefficient of heavily deformed nanocrystalline iron
TL;DR: Molecular dynamics simulations shed light on the underlying mechanisms, confirming the major role played by the grain boundary in the dynamic contribution to the thermal factor of iron alloy powder.
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Effects of SnO2 on hydrogen desorption of MgH2
TL;DR: The hydrogen desorption properties of Magnesium Hydride (MgH2) ball milled with cassiterite (SnO2) have been investigated by X-ray powder diffraction and thermal analysis as mentioned in this paper.
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Solid State Nuclear Magnetic Resonance and X-ray Diffraction Line Profile Analysis of heavily deformed fluorite
TL;DR: In this article, the effect of high-energy ball milling on calcium fluoride was studied by X-ray Diffraction (XRD) Line Profile Analysis (LPA) and Solid State Nuclear Magnetic Resonance (NMR) spin-lattice relaxation.