Article ID Journal Published Year Pages File Type
1253670 Chemistry and Physics of Lipids 2009 7 Pages PDF
Abstract

Raman spectroscopy was used to distinguish the differences in the molecular organization of the α, β′ and β polymorphs, as well as the liquid state, of tristearin with focus placed on the CO, CH and CC Raman-active stretching regions. The ester carbonyl stretching region permitted polymorphic discrimination due to significant differences in the number of modes, their relative frequencies and their full-widths at half-maximum. In the liquid state, the absence of obvious signatures in this region indicated that many local micro-environments likely exist about the ester carbonyl of molten tristearin. The ratio between the symmetrical and asymmetrical CH stretching modes was linearly correlated with the enthalpy of fusion for each polymorph. The CC stretching modes, which provided insight into the trans/gauche content, were polymorph independent, but changed significantly upon transition into the liquid state (p < 0.05). Overall, Raman spectroscopy allowed for the quick discrimination of tristearin polymorphs from a conformational and thermodynamic perspective.

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Physical Sciences and Engineering Chemistry Chemistry (General)
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