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Solving and refining inorganic structures
International Tables for Crystallography (2019). Vol. H, ch. 4.5, pp. 442-451 [ doi:10.1107/97809553602060000960 ]
... associated increase in the optimization convergence was achieved. References Broach, R. W., Chuang, I. S., Marks, T. J. & Williams, J. M. ... neutron diffraction. Inorg. Chem. 22, 1081-1084.GoogleScholar Brodski, V., Peschar, R. & Schenk, H. (2005). Organa - a program package for structure ... from maximum entropy method. Phys. Rev. B, 83, 064107.GoogleScholar Cernư, R., Bonhomme, F., Yvon, K., Fischer, P., Zolliker, P., Cox, ...
Hybrid compounds
International Tables for Crystallography (2019). Vol. H, Section 4.5.4.2, p. 449 [ doi:10.1107/97809553602060000960 ]
... A. P., El-Kaderi, H. M., Furukawa, H., Hunt, J. R. & Yaghi, O. M. (2007). Reticular synthesis of microporous and ...
[more results from section 4.5.4 in volume H]
Structure validation - theoretical issues
International Tables for Crystallography (2019). Vol. H, Section 4.5.3.5, pp. 447-448 [ doi:10.1107/97809553602060000960 ]
... 37, 621-628.GoogleScholar Djerdj, I., Cao, M., Rocquefelte, X., Cernư, R., Jaglicic, Z., Arcon, D., Potocnik, A., Gozzo, F. & Niederberger, M. ... properties. Chem. Mater. 21, 3356-3369.GoogleScholar Favre-Nicolin, V. & Cernư, R. (2002). FOX, `free objects for crystallography': a modular approach ... diffraction. J. Appl. Cryst. 35, 734-743.GoogleScholar Lindemann, I., Ferrer, R. D., Dunsch, L., Filinchuk, Y., Cernư, R., Hagemann, H., ...
[more results from section 4.5.3 in volume H]
The choice of the cost function in DSM algorithms
International Tables for Crystallography (2019). Vol. H, Section 4.5.2.7, p. 445 [ doi:10.1107/97809553602060000960 ]
... powder diffraction data and crystallographers' experience. References Brodski, V., Peschar, R. & Schenk, H. (2005). Organa - a program package for structure ... J. Appl. Cryst. 38, 688-693.GoogleScholar Favre-Nicolin, V. & Cernư, R. (2002). FOX, `free objects for crystallography': a modular approach ... chemistry rules by simulated annealing. Nature, 346, 343-345.GoogleScholar Steuer, R. E. (1986). Multiple Criteria Optimization: Theory, Computations, and ...
[more results from section 4.5.2 in volume H]
The molecular/non-molecular and the organic/inorganic boundaries
International Tables for Crystallography (2019). Vol. H, Section 4.5.1, p. 442 [ doi:10.1107/97809553602060000960 ]
The molecular/non-molecular and the organic/inorganic boundaries 4.5.1. The molecular/non-molecular and the organic/inorganic boundaries An inorganic compound may be defined as a compound that does not correspond to the definition of organic compounds according to IUPAC (Rigaudy & Klesney, 1979 ). The separation of compounds by the ...
International Tables for Crystallography (2019). Vol. H, ch. 4.5, pp. 442-451 [ doi:10.1107/97809553602060000960 ]
... associated increase in the optimization convergence was achieved. References Broach, R. W., Chuang, I. S., Marks, T. J. & Williams, J. M. ... neutron diffraction. Inorg. Chem. 22, 1081-1084.GoogleScholar Brodski, V., Peschar, R. & Schenk, H. (2005). Organa - a program package for structure ... from maximum entropy method. Phys. Rev. B, 83, 064107.GoogleScholar Cernư, R., Bonhomme, F., Yvon, K., Fischer, P., Zolliker, P., Cox, ...
Hybrid compounds
International Tables for Crystallography (2019). Vol. H, Section 4.5.4.2, p. 449 [ doi:10.1107/97809553602060000960 ]
... A. P., El-Kaderi, H. M., Furukawa, H., Hunt, J. R. & Yaghi, O. M. (2007). Reticular synthesis of microporous and ...
[more results from section 4.5.4 in volume H]
Structure validation - theoretical issues
International Tables for Crystallography (2019). Vol. H, Section 4.5.3.5, pp. 447-448 [ doi:10.1107/97809553602060000960 ]
... 37, 621-628.GoogleScholar Djerdj, I., Cao, M., Rocquefelte, X., Cernư, R., Jaglicic, Z., Arcon, D., Potocnik, A., Gozzo, F. & Niederberger, M. ... properties. Chem. Mater. 21, 3356-3369.GoogleScholar Favre-Nicolin, V. & Cernư, R. (2002). FOX, `free objects for crystallography': a modular approach ... diffraction. J. Appl. Cryst. 35, 734-743.GoogleScholar Lindemann, I., Ferrer, R. D., Dunsch, L., Filinchuk, Y., Cernư, R., Hagemann, H., ...
[more results from section 4.5.3 in volume H]
The choice of the cost function in DSM algorithms
International Tables for Crystallography (2019). Vol. H, Section 4.5.2.7, p. 445 [ doi:10.1107/97809553602060000960 ]
... powder diffraction data and crystallographers' experience. References Brodski, V., Peschar, R. & Schenk, H. (2005). Organa - a program package for structure ... J. Appl. Cryst. 38, 688-693.GoogleScholar Favre-Nicolin, V. & Cernư, R. (2002). FOX, `free objects for crystallography': a modular approach ... chemistry rules by simulated annealing. Nature, 346, 343-345.GoogleScholar Steuer, R. E. (1986). Multiple Criteria Optimization: Theory, Computations, and ...
[more results from section 4.5.2 in volume H]
The molecular/non-molecular and the organic/inorganic boundaries
International Tables for Crystallography (2019). Vol. H, Section 4.5.1, p. 442 [ doi:10.1107/97809553602060000960 ]
The molecular/non-molecular and the organic/inorganic boundaries 4.5.1. The molecular/non-molecular and the organic/inorganic boundaries An inorganic compound may be defined as a compound that does not correspond to the definition of organic compounds according to IUPAC (Rigaudy & Klesney, 1979 ). The separation of compounds by the ...
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