In this paper, a simple method of obtaining the scale factor that transforms powder intensities from arbitrary units into electron units is proposed. This method, which is suitable for diffraction data collected from polycrystalline single-phase specimens, without fluorescence and preferred-orientation effects, obtains the scale factor analyzing the global scattered intensity in the reciprocal space without the necessity for the peak-background separation. Once the scale factor is found, it is possible to estimate the overall thermal parameter and to trace a physically based background line which is useful in extracting accurate structure factors
Diffraction in the polycrystal/crystalline powder is one of the most powerful techniques in study of...
Diffraction in the polycrystal/crystalline powder is one of the most powerful techniques in study of...
Methods of structure determination from powder diffraction of non-molecular compounds (inorganics, e...
In this paper, a simple method of obtaining the scale factor that transforms powder intensities from...
International audienceAccurate structure factors are extracted from synchrotron powder diffraction d...
In this contribution we provide the theoretical and experimental basis of powder diffraction methods...
Developments in experimental techniques in micro electron diffraction and serial X-ray crystallograp...
Developments in experimental techniques in micro electron diffraction and serial X-ray crystallograp...
A statistical method is presented for the determination of the scale factor, an overall isotropic te...
The development of powder diffraction (PD) techniques for structure analysis is traced from its ince...
The mathematical theory of the powder diffraction intensity function is presented in the form access...
A method for calculation of the whole-profile powder diffraction R-factor R-wp, adapted specifically...
Powder diffraction is the mostly widely used crystallographic method, with applications spanning all...
The structure solution from powder diffraction has undergone an intense evolution during the last 20...
Many solids can be prepared only as microcrystalline powders and are not suitable for structural cha...
Diffraction in the polycrystal/crystalline powder is one of the most powerful techniques in study of...
Diffraction in the polycrystal/crystalline powder is one of the most powerful techniques in study of...
Methods of structure determination from powder diffraction of non-molecular compounds (inorganics, e...
In this paper, a simple method of obtaining the scale factor that transforms powder intensities from...
International audienceAccurate structure factors are extracted from synchrotron powder diffraction d...
In this contribution we provide the theoretical and experimental basis of powder diffraction methods...
Developments in experimental techniques in micro electron diffraction and serial X-ray crystallograp...
Developments in experimental techniques in micro electron diffraction and serial X-ray crystallograp...
A statistical method is presented for the determination of the scale factor, an overall isotropic te...
The development of powder diffraction (PD) techniques for structure analysis is traced from its ince...
The mathematical theory of the powder diffraction intensity function is presented in the form access...
A method for calculation of the whole-profile powder diffraction R-factor R-wp, adapted specifically...
Powder diffraction is the mostly widely used crystallographic method, with applications spanning all...
The structure solution from powder diffraction has undergone an intense evolution during the last 20...
Many solids can be prepared only as microcrystalline powders and are not suitable for structural cha...
Diffraction in the polycrystal/crystalline powder is one of the most powerful techniques in study of...
Diffraction in the polycrystal/crystalline powder is one of the most powerful techniques in study of...
Methods of structure determination from powder diffraction of non-molecular compounds (inorganics, e...