Modeling the Crystal Morphology of α-lactose Monohydrate
- 1 January 1997
- journal article
- Published by American Geophysical Union (AGU) in Journal of Pharmaceutical Sciences
- Vol. 86 (1) , 135-141
- https://doi.org/10.1021/js950496w
Abstract
Molecular modeling techniques using attachment energy calculations have been applied, for the first time to our knowledge, to simulate the morphology of an organic hydrate: alpha-lactose monohydrate. Calculation of the strong intermolecular forces using the atom-atom approximation and the potential parameters of Nemethy et al. (Némethy, G.; Pottle, M. S.; Scheraga, H. A. J. Phys. Chem. 1983, 87, 1883-1887) reveals the crystallization to be dominated by intermolecular interactions between lactose molecules rather than lactose-water interactions, suggesting that water of hydration plays a space-filling role in the growth process. The simulated crystal shows a tomahawk-like morphology with the polar effect of the monoclinic space group P21 correctly reproduced by the occurrence of only one of the [010] forms. Confrontation of these results with experimental work of our own, involving crystals precipitated from aqueous solutions at various degrees of undercooling examined by scanning electron microscopy, and that of Visser and Bennema (Visser, R. A.; Bennema, P. Neth. Milk Dairy J. 1983, 37,109-137), who assigned faces to a crystal, gives good agreement, suggesting the suitability of the force field and atom-atom approaches to model the crystallization of organic hydrates.Keywords
This publication has 25 references indexed in Scilit:
- Application of Bravais-Friedel-Donnay-Harker, attachment energy and Ising models to predicting and understanding the morphology of molecular crystalsJournal of Physics D: Applied Physics, 1991
- Light scattering in crystal growthJournal of Crystal Growth, 1990
- Morang — A computer program designed to aid in the determinations of crystal morphologyComputer Physics Communications, 1988
- The structure of aqueous solutions of some dihydrogen orthophosphates by laser Raman spectroscopyJournal of Crystal Growth, 1987
- Orientational order in naphthalene crystal-solution interfacesJournal of Crystal Growth, 1987
- Density functional models for inhomogeneous hard sphere fluidsMolecular Physics, 1987
- Physikalisch-pharmazeutische Eigenschaften von LactosePharmazie in unserer Zeit, 1987
- Solid-state properties of powders in the formulation and processing of solid dosage formsInternational Journal of Pharmaceutics, 1983
- STRUCTURE OF WATER NEAR SOLID INTERFACESIndustrial & Engineering Chemistry, 1969
- The growth of crystals and the equilibrium structure of their surfacesPhilosophical Transactions of the Royal Society of London. Series A, Mathematical and Physical Sciences, 1951