Crystal Growth & Design · 2008 · 71 citations · 23 references
EngineeringMolecular Self-assemblyGlycobiologyConcomitant CrystallizationPolymorphic OutcomeEvaporation-driven CrystallizationCrystal FormationBiophysicsGlycosylationProtein ChemistryBiochemistrySolvent EvaporationBiopolymersCrystallographyBiomolecular EngineeringBiofunctional MaterialSurface FunctionalizationNatural SciencesSelf-assemblySurface ScienceProtein EngineeringPatterned SubstratesSolution Ph
This study demonstrates the effect of the solution pH on the polymorphic outcome of glycine by evaporation-driven crystallization from aqueous solution. More than 2000 solution droplets under identical conditions were generated using a patterned self-assembled monolayers (SAMs) substrate. Each droplet on the substrate serves as an independent crystallization trial. Glycine nucleated inside the droplets through solvent evaporation, and their polymorphic forms were identified via Raman microscopy. Three different polymorphic forms of glycine (α-, β-, and γ-forms) simultaneously crystallized at all conditions employed. The probability of producing the thermodynamically stable γ-glycine from acidic (pH 3.40) or basic solution (pH 10.10) droplets significantly increased when compared with neutral aqueous solution (pH ∼ 6.00) droplets.
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Perry's chemical engineers' handbook
Choice Reviews Online · 1998 · 5.9K citations
Applied Statistics and Probability for Engineers
Eric R. Ziegel · Technometrics · 2002 · 1.6K citations
Engineering, Discrete Probability, Probabilistic Analysis +5
The crystal structure of γ-glycine
Yöichi Iitaka · Acta Crystallographica · 1961 · 352 citations · Full text