Search results for "Molecular encapsulation"

showing 3 items of 3 documents

Molecular Encapsulation. Organic Reactions in Constrained Systems. Edited by Udo H. Brinker and Jean-Luc Miesset.

2011

Organic reaction010405 organic chemistryChemistryOrganic chemistryGeneral ChemistryMolecular encapsulation01 natural sciencesCatalysis0104 chemical sciencesAngewandte Chemie International Edition
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Encapsulation of Xenon by a Self-Assembled Fe4L6 Metallosupramolecular Cage

2015

We report (129)Xe NMR experiments showing that a Fe4L6 metallosupramolecular cage can encapsulate xenon in water with a binding constant of 16 M(-1). The observations pave the way for exploiting metallosupramolecular cages as economical means to extract rare gases as well as (129)Xe NMR-based bio-, pH, and temperature sensors. Xe in the Fe4L6 cage has an unusual chemical shift downfield from free Xe in water. The exchange rate between the encapsulated and free Xe was determined to be about 10 Hz, potentially allowing signal amplification via chemical exchange saturation transfer. Computational treatment showed that dynamical effects of Xe motion as well as relativistic effects have signific…

Xenon010405 organic chemistryChemistryChemical exchangechemistry.chemical_elementGeneral Chemistry010402 general chemistry01 natural sciencesBiochemistryBinding constantCatalysis0104 chemical sciencesSelf assembledColloid and Surface ChemistryXenon13. Climate actionComputational chemistrySaturation transferChemical physicsmetallosupramolecular cagesmolecular encapsulationCageRelativistic quantum chemistrySignal amplificationta116Journal of the American Chemical Society
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Structural Features of β-Cyclodextrin Solvation in the Deep Eutectic Solvent, Reline

2020

The inherently amphiphilic nature of native cyclodextrins (CDs) determines their peculiar molecular encapsulation features, enabling applications such as targeted drug nanodelivery, aroma protection, etc. On the contrary, it may also lead to poor solubility in water and other organic solvents and to potentially detrimental flocking in these media, thus posing limitations to more extensive usage. Here we use small angle X-ray scattering to show that deep eutectic solvent reline (1:2 choline chloride:urea) succeeds in dissolving large amounts of beta-CD (at least 800 mg/mL, compared with the solubility in water of 18 mg/mL), without aggregation phenomena occurring. At the microscopic level, m…

deep eutectic solventMolecular dynamics010402 general chemistry01 natural sciencesCholinechemistry.chemical_compound0103 physical sciencesAmphiphileMaterials ChemistryCyclodextrinPhysical and Theoretical ChemistrySolubilityDissolutionchemistry.chemical_classification010304 chemical physicsCyclodextrinChemistryMDCyclodextrinDeep Eutectic SolventStructural PropertiesSolvationMolecular encapsulationsmall angle x-ray scattering0104 chemical sciencesSurfaces Coatings and FilmsDeep eutectic solventCyclodextrin Choline MD Drug deliveryChemical engineeringDrug deliveryCholine chloride
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