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- Solid Form Selection: Cocrystals, Salts, Solvates, and Polymorphs
- (224a) Polymorph Control of Nanosized Organic Molecular Crystals On the Engineered Surfaces
In this work we employ patterned surface engineered surfaces that allow us to crystallize from 500 nm droplets while controlling the supersaturation. Results show that we can produce organic molecular nanosized crystals directly from solution with relatively low supersaturation when compared to bulk crystallization with a uniform sizes. 500nm sized bifucntional (hydrophilic and hydrophobic) patterned surfaces were prepared using lithography and Self Assembled Monolayers (SAMs) for depositing droplets of solution to be crystallized upon. By control of solution temperature and solvent evaporation rate, nano-sized crystals are formed on each island. Glycine crystals under 200nm have been generated and characterized by atomic force and Raman microscopy. Polymorphic outcome is shown to depend on supersaturation the generation rate. In addition, our observations suggest that this technique can be used for studying the other physical/chemical properties of nano-sized crystals such as melting point and solubility.