Search results for "FFC-NMR"

showing 3 items of 13 documents

Dynamics of hyaluronan aqueous solutions as assessed by fast field cycling NMR relaxometry.

2010

Fast field cycling (FFC) NMR relaxometry has been used to study the conformational properties of aqueous solutions of hyaluronan (HYA) at three concentrations in the range 10 to 25 mg mL(-1). Results revealed that, irrespective of the solution concentration, three different hydration layers surround hyaluronan. The inner layer consists of water molecules strongly retained in the proximity of the HYA surface. Because of their strong interactions with HYA, water molecules in this inner hydration layer are subject to very slow dynamics and have the largest correlation times. The other two hydration layers are made of water molecules which are located progressively further from the HYA surface.…

RelaxometryAqueous solutionMagnetic Resonance SpectroscopyField cyclingChemistrySettore AGR/13 - Chimica AgrariaDynamics (mechanics)Analytical chemistryWaterBiochemistryAnalytical ChemistryIntramolecular forceQuadrupoleMolecular motionCarbohydrate ConformationMoleculeFFC-NMR Relaxometry Correlation time Quadrupole interactions Hydration layerHyaluronic AcidAnalytical and bioanalytical chemistry
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Solid-state 1H-NMR relaxation properties of the fruit of a wild relative of eggplant at different proton Larmor frequencies

2009

1H longitudinal relaxation time profiles (T1) at different proton Larmor frequencies were registered for a solid state plant tissue by using fast field cycling (FFC) nuclear magnetic resonance (NMR) spectroscopy. T1 distributions were obtained and the curves deconvoluted in order to differentiate among the different T1 components. Among the components, two were assigned to hydrophobic (e.g. fatty acids) and hydrophilic (e.g. saccharides) molecular systems, whereas the remaining others were attributed to bulk and bound water. This paper showed for the first time solid state FFC-NMR spectroscopy applied to plant tissue, and revealed that relaxometry is a very promising technique for studying …

RelaxometryMolecular dynamicNuclear Magnetic Resonance SpectroscopyChemistryFFC-NMR RelaxometryRelaxation (NMR)Settore AGR/13 - Chimica AgrariaAnalytical chemistryNMRD profileNuclear magnetic resonance spectroscopyAtomic and Molecular Physics and OpticsAnalytical ChemistryPlant systemProton NMRBound waterTransverse relaxation-optimized spectroscopyEggplantsSpectroscopyTwo-dimensional nuclear magnetic resonance spectroscopySpectroscopy
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SMART NANOSPONGE-BASED SYSTEMS FOR ADVANCED APPLICATIONS

2023

rosmarinic acidpolymerrelaxometrysmart materialSettore CHIM/06 - Chimica Organicaquercetinphotocatalysifolic acidcontrolled release dyecyclodextrinheuristic analysiadsorptionpH-tunabilitycalixarenenanomaterialnanospongeFFC-NMR
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