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INTERNATIONAL TABLES for CRYSTALLOGRAPHY |
Volume G |
Definition and Exchange of Crystallographic Data |
The core CIF dictionary has been extended to provide a formalism for the description in software of certain types of aperiodic crystal structure. Aperiodic structures do not have lattice periodicity, but show long-range order; their diffraction patterns exhibit sharp Bragg peaks that have to be indexed using more than three Miller indices, and can be classified in one of the three groups: incommensurately modulated structures, incommensurate composite structures or quasicrystals.
Modulated structures are described by periodic distortions of an underlying (reference) crystal structure. Composite structures can be thought of as being built of two or more periodic subsystems whose lattices are mutually incommensurate. Both may be described using a CIF dictionary of terms (msCIF) that express the modulation or superposition of structural models according to the standard established by the IUCr Commission on Aperiodic Crystals.
Quasicrystals not only lack three-dimensional lattice periodicity but also show noncrystallographic symmetry. Theoretical descriptions of quasicrystal structures are still relatively poorly developed, and are not described by the terms in the msCIF dictionary.
The following CIF dictionary is referenced in this chapter:
The following program is referenced in this chapter:
The following example files may be of use in association with this chapter:
Cervellino, A., Haibach, T. & Steurer, W.
(2002). Structure solution of the basic decagonal Al-Co-Ni
phase by the atomic surfaces modelling method. Acta
Cryst. B58, 8-33.
Chapuis, G., Farkas-Jahnke, M., Pérez-Mato,
J. M., Senechal, M., Steurer, W., Janot, C., Pandey, D. &
Yamamoto, A. (1997). Checklist for the description of incommensurate
modulated crystal structures. Report of the International Union of
Crystallography Commission on Aperiodic Crystals. Acta Cryst.
A53, 95-100.
See also
HTML version
(http://www.iucr.org/iucr-top/comm/capd/checklist/index.html)
Elcoro, L., Pérez-Mato, J. M., Darriet, J.
& El Abed, A. (2003). Superspace description of trigonal and
orthorhombic A1+xAx'B1-xO3
compounds as modulated layered structures; application to the refinement
of trigonal Sr6Rh5O15.
Acta Cryst. B59, 217-233.
Haibach, T., Cervellino, A., Estermann, M. A.
& Steurer, W. (2000). X-ray structure determination of
quasicrystals - limits and potentiality. Z. Kristallogr.
215, 569-583.
Janssen, T., Janner, A., Looijenga-Vos, A. &
de Wolff, P. M. (2004). Incommensurate and commensurate
modulated structures. International Tables for Crystallography,
Volume C, Mathematical, chemical and physical tables,
3rd ed., edited by E. Prince, ch. 9.8. Dordrecht: Kluwer Academic
Publishers.
Pérez-Mato, J. M., Etrillard, J.,
Kiat, J. M., Liang, B. & Lin, C. T. (2003).
Competition between composite and modulated configurations in
Bi2Sr2CaCu2O8+
and its relation to oxygen stoichiometry. Phys. Rev. B
67, 24504-1-24504-13.
Petrícek, V. & Dušek, M. (2000). The Crystallographic Computing System JANA. Institute of Physics, Prague, Czech Republic. See http://www-xray.fzu.cz/jana/Jana2000/jana.html.
Petrícek, V., van der Lee, A. &
Evain, M. (1995). On the use of crenel functions for occupationally
modulated structures. Acta Cryst. A51, 529-535.
Smaalen, S. van (1991). Superspace-group
approach to the modulated structure of the inorganic misfit layer
compound (LaS)1.14NbS2. J. Phys. Condens.
Matter, 3, 1247-1263.
Smaalen, S. van (1995). Incommensurate crystal structures. Crystallogr. Rev. 4, 79-202.
Spadaccini, N., Hall, S. R. &
Castleden, I. R. (2000). Relational expressions in STAR File
dictionaries. J. Chem. Inf. Comput. Sci. 40,
1289-1301.
Wolff, P. M. de (1974). The pseudo-symmetry
of modulated crystal structures. Acta Cryst. A30,
777-785.
Wolff, P. M. de, Janssen, T. & Janner, A.
(1981). The superspace groups for incommensurate crystal structures
with a one-dimensional modulation. Acta Cryst. A37,
625-636.
Copyright © 2005 International Union of Crystallography