Publication | Closed Access
Thermochromatism and Structural Evolution of Metastable Polydiacetylenic Crystals
82
Citations
16
References
2006
Year
Materials ScienceMolecular SolidEngineeringCrystal MaterialPolymer ScienceApplied PhysicsStructural EvolutionPolymerized SodiumX-ray DiffractionLiquid Crystalline ElastomerPhysical ChemistryThermochromatic Transition BehaviorThermodynamicsChemistryCrystal FormationNanocrystalline MaterialCrystallographyCrystal Structure Design
Topochemically polymerized sodium 10,12-pentacosadiynoate (PCDA-Na) microcrystals show an irreversible red-to-blue chromatic transition accompanied by a distinct structural evolution upon initial thermal treatment, and show a subsequent completely reversible blue-to-red chromatic transition upon further thermal stimuli. Visible absorption spectroscopy, X-ray diffraction (XRD), and differential scanning calorimetry (DSC) are used to investigate the thermochromatic transition behavior of the polydiacetylenic microcrystals. Brief quantum mechanical geometry optimization is employed to explain the lattice dimensional change during the irreversible red-to-blue chromatic transition of the metastable polydiacetylenic crystals.
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