Kdm. Harris et al., CRYSTAL-STRUCTURE DETERMINATION FROM POWDER DIFFRACTION DATA BY MONTE-CARLO METHODS, Journal of the American Chemical Society, 116(8), 1994, pp. 3543-3547
Many important crystalline solids cannot be prepared in the form of si
ngle crystals of sufficient size and quality for single-crystal X-ray
diffraction studies, and in such cases it is essential that structural
information can be extracted from powder diffraction data. In this pa
per, a method employing a Monte Carlo algorithm for crystal structure
determination from powder diffraction data is developed and applied. I
n this method, a series of structural models is generated by random mo
vement of a collection of atoms within the unit cell, and the acceptan
ce or rejection of each trial structure is based upon the Metropolis i
mportance sampling technique-in employing this technique, the agreemen
t between the experimental powder diffraction pattern and the powder d
iffraction pattern calculated for the structural model is considered.
The success of this method for ab initio crystal structure determinati
on from powder X-ray diffraction data is demonstrated by its applicati
on to determine the known crystal structure of p-CH3C6H4SO2NHNH2 and t
he previously unknown crystal structure of p-BrC6H4CH2CO2H. In view of
the successful application of the methodology reported here, we predi
ct that this Monte Carlo technique will have an important future role
in ab initio crystal structure determination from powder diffraction d
ata.