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- W2163956997 endingPage "386" @default.
- W2163956997 startingPage "359" @default.
- W2163956997 abstract "Crystallization is an important separation and particle formation technique in the manufacture of high-value-added products. During crystallization, many physicochemical characteristics of the substance are established. Such characteristics include crystal polymorph, shape and size, chemical purity and stability, reactivity, and electrical and magnetic properties. However, control over the physical form of crystalline materials has remained poor, due mainly to an inadequate understanding of the basic growth and dissolution mechanisms, as well as of the influence of impurities, additives, and solvents on the growth rate of individual crystal faces. Crystal growth is a surface-controlled phenomenon in which solute molecules are incorporated into surface lattice sites to yield the bulk long-range order that characterizes crystalline materials. In this article, we describe some recent advances in crystal morphology engineering, with a special focus on a new mechanistic model for spiral growth. These mechanistic ideas are simple enough that they can be made to work and accurate enough that they are useful." @default.
- W2163956997 created "2016-06-24" @default.
- W2163956997 creator A5053342663 @default.
- W2163956997 creator A5065480438 @default.
- W2163956997 creator A5067677064 @default.
- W2163956997 date "2013-07-01" @default.
- W2163956997 modified "2023-10-14" @default.
- W2163956997 title "Engineering Crystal Morphology" @default.
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