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Calphad ◽  
2022 ◽  
Vol 76 ◽  
pp. 102366
Author(s):  
Yang He ◽  
Chunlin Chen ◽  
Jean Lehmann

Author(s):  
Alejandra Matamoros‐Recio ◽  
Juan Felipe Franco‐Gonzalez ◽  
Lucia Perez‐Regidor ◽  
Jean‐Marc Billod ◽  
Joan Guzman‐Caldentey ◽  
...  

Author(s):  
Sonsoles Martin-Santamaria ◽  
Alejandra Matamoros-Recio ◽  
Juan Felipe Franco-Gonzalez ◽  
Lucia Perez-Regidor ◽  
Jean-Marc Billod ◽  
...  

2021 ◽  
Vol 104 (2) ◽  
Author(s):  
Gérald Faussurier ◽  
Christophe Blancard ◽  
Mandy Bethkenhagen

2021 ◽  
Vol 54 (4) ◽  
Author(s):  
Kunal Kumar Jha ◽  
Barbara Gruza ◽  
Michał Leszek Chodkiewicz ◽  
Christian Jelsch ◽  
Paulina Maria Dominiak

The advancement in 3D electron diffraction (3D ED) techniques that lead to a revolution in molecular structure determination using nano-sized crystals is now achieving atomic resolution. The structures can be obtained from 3D ED data with tools similar to those used for X-ray structure determination. In this context, the MoPro software, originally designed for structure and charge density refinements using X-ray diffraction data, has been adapted. Structure refinement on 3D ED data was achieved via implementation of electron scattering factors available in the literature and by application of the Mott–Bethe equation to X-ray scattering factors computed from the multipolar atom model. The multipolar model was parametrized using the transferable pseudoatom databanks ELMAM2 and UBDB. Applying the independent atom model (IAM), i.e. spherical neutral atom refinement, to 3D ED data on β-glycine in MoPro resulted in structure and refinement statistics comparable to those obtained from other well known software. Use of the transferred aspherical atom model (TAAM) led to improvement of the refinement statistics and a better fit of the model to the 3D ED data as compared with the spherical atom refinement. The anisotropic displacement parameters of non-H atoms appear underestimated by typically 0.003 Å2 for the non-H atoms in IAM refinement compared with TAAM. Thus, MoPro is shown to be an effective tool for crystal structure refinement on 3D ED data and allows use of a spherical or a multipolar atom model. Electron density databases can be readily transferred with no further modification needed when the Mott–Bethe equation is applied.


2021 ◽  
Vol 194 ◽  
pp. 110451
Author(s):  
Weimiao Lv ◽  
Liuming Yan ◽  
Zhaomin Wang ◽  
Dongqing Zhang ◽  
Xuejiao Li ◽  
...  

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