We investigate disordered solids by automated fitting of a Monte Carlo simulation of a crystal to observed single-crystal diffuse X-ray scattering. This method has been extended to the study of crystals of relatively large organic molecules by using a z-matrix to describe the molecules. This allows exploration of motions within molecules. We refer to the correlated thermal motion observed in benzil, and to the occupational and thermal disorder in the 1:1 adduct of hexamethylenetetramine and azelaic acid, HMTA. The technique is capable of giving insight into modes of vibration within molecules and correlated motions between molecules
Diffuse scattering probes the local ordering in a crystal, whereas Bragg peaks are descriptive of th...
Diffuse scattering from a crystal contains valuable information about the two-body correlations (rel...
Incommensurate crystal structures do not display three-dimensional periodicity. Discovered in the 19...
The measurement of diffuse scattering data over large volumes of reciprocal space is now relatively ...
Conventional structure analysis averages the structure of an entire crystal into a single unit cell....
Diffuse scattering - the coherently scattered intensity that is not localised on the reciprocal latt...
Large-amplitude motion of macromolecules involves mainly rotation about bonds (conformational motion...
The atom-atom intermol. force field AA-CLP with subdivision of interaction energies into Coulomb-pol...
For decades, X-ray crystallography has been the primary tool used to measure the structure of macrom...
Extensive molecular simulations are carried out as a function of temperature to understand and quant...
For decades, X-ray crystallography has been the primary tool used to measure the structure of macrom...
Order-Disorder phase transition in molecular systems, such as structural phase transformations in mo...
The solid-state molecular disorder of pentachloronitrobenzene (PCNB) and its role in causing anomalo...
Although X-ray diffraction is still mainly used to determine crystal structures, the demand for an u...
Although X-ray diffraction is still mainly used to determine crystal structures, the demand for an u...
Diffuse scattering probes the local ordering in a crystal, whereas Bragg peaks are descriptive of th...
Diffuse scattering from a crystal contains valuable information about the two-body correlations (rel...
Incommensurate crystal structures do not display three-dimensional periodicity. Discovered in the 19...
The measurement of diffuse scattering data over large volumes of reciprocal space is now relatively ...
Conventional structure analysis averages the structure of an entire crystal into a single unit cell....
Diffuse scattering - the coherently scattered intensity that is not localised on the reciprocal latt...
Large-amplitude motion of macromolecules involves mainly rotation about bonds (conformational motion...
The atom-atom intermol. force field AA-CLP with subdivision of interaction energies into Coulomb-pol...
For decades, X-ray crystallography has been the primary tool used to measure the structure of macrom...
Extensive molecular simulations are carried out as a function of temperature to understand and quant...
For decades, X-ray crystallography has been the primary tool used to measure the structure of macrom...
Order-Disorder phase transition in molecular systems, such as structural phase transformations in mo...
The solid-state molecular disorder of pentachloronitrobenzene (PCNB) and its role in causing anomalo...
Although X-ray diffraction is still mainly used to determine crystal structures, the demand for an u...
Although X-ray diffraction is still mainly used to determine crystal structures, the demand for an u...
Diffuse scattering probes the local ordering in a crystal, whereas Bragg peaks are descriptive of th...
Diffuse scattering from a crystal contains valuable information about the two-body correlations (rel...
Incommensurate crystal structures do not display three-dimensional periodicity. Discovered in the 19...