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Introduction
Leoni, M.  International Tables for Crystallography (2019). Vol. H, Section 5.1.1, p. 524 [ doi:10.1107/97809553602060000966 ]
... Warren & Averbach, 1950 , 1952 ) and whole-powder-pattern modelling (Scardi & Leoni, 2002 ; Scardi et al., 2010 ; see also Chapter 3.6 ) are ... diffraction peaks. J. Phys. Condens. Matter, 24, 215301.GoogleScholar Scardi, P. & Leoni, M. (2002). Whole powder pattern modelling. Acta Cryst. A58, ...

Domain size and domain-size distributions
Leoni, M.  International Tables for Crystallography (2019). Vol. H, ch. 5.1, pp. 524-537 [ doi:10.1107/97809553602060000966 ]
... Warren & Averbach, 1950 , 1952 ) and whole-powder-pattern modelling (Scardi & Leoni, 2002 ; Scardi et al., 2010 ; see also Chapter 3.6 ) are ... is the basis of the whole powder pattern modelling (Scardi & Leoni, 2002 ; Chapter 3.6 ), the second one is the basis of ... unit-cell volume: and, through Cholesky decomposition, , the orthogonalization matrix M. This will give us the general values for the ...

Whole powder pattern modelling: microstructure determination from powder diffraction data
Leoni, M.  International Tables for Crystallography (2019). Vol. H, ch. 3.6, pp. 288-303 [ doi:10.1107/97809553602060000951 ]
Whole powder pattern modelling: microstructure determination from powder diffraction data The whole powder pattern modelling (WPPM) approach to obtain microstructure information from powder diffraction data is presented. The method relies on the generation of the peak profiles from physical models for the microstructure and leverages on the directional information that can ...

Copper oxide
Leoni, M.  International Tables for Crystallography (2019). Vol. H, Section 3.6.3.2, pp. 299-301 [ doi:10.1107/97809553602060000951 ]
... tip, possibly indicating a wide, bimodal or odd size distribution (Leoni & Scardi, 2004 ). The size distribution resulting from the WPPM ... induced by the milling. References Brese, N. E., O'Keeffe, M., Ramakrishna, B. L. & Von Dreele, R. B. (1990). Low ... determination of crystallite size. J. Appl. Cryst. 11, 102-113.GoogleScholar Leoni, M. & Scardi, P. (2004). Nanocrystalline domain size distributions ...
     [more results from section 3.6.3 in volume H]

Alternative approaches
Leoni, M.  International Tables for Crystallography (2019). Vol. H, Section 3.6.2.7.1, pp. 297-298 [ doi:10.1107/97809553602060000951 ]
... Cryst. 36, 1148-1158.GoogleScholar Cozzoli, P. D., Snoeck, E., Garcia, M. A., Giannini, C., Guagliardi, A., Cervellino, A., Gozzo, F., Hernando ... Sci. Eng. A Struct. Mater. 387-389, 343-347.GoogleScholar Treacy, M. M. J., Newsam, J. M. & Deem, M. W. (1991). ...
     [more results from section 3.6.2 in volume H]

Introduction
Leoni, M.  International Tables for Crystallography (2019). Vol. H, Section 3.6.1, pp. 288-289 [ doi:10.1107/97809553602060000951 ]
... particle size determination. Phys. Rev. 56, 978-982.GoogleScholar Scardi, P., Leoni, M. & Delhez, R. (2004). Line broadening analysis using integral breadth ...

Example
Leoni, M.  International Tables for Crystallography (2019). Vol. H, Section 5.1.11, pp. 534-536 [ doi:10.1107/97809553602060000966 ]
... was thoroughly characterized both by diffraction and transmission electron microscopy (Leoni et al., 2004 ) and the corresponding powder-diffraction pattern is ... and a secondary graphite monochromator. The domains are spherical (cf. Leoni et al., 2004 ) and the lattice is face-centred cubic ... practical application of some of the formulae, the software PM2K (Leoni et al., 2006 ) was used. Figure 5.1.5 | | Nanocrystalline ceria ...

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