Search results for " ESI-MS"

showing 2 items of 2 documents

Review: Mass spectrometry of surfactant aggregates

2011

In contrast with the enormous amount of literature produced during many decades in the field of surfactant aggregation in liquid, liquid crystalline and solid phases, only a few investigations concerning surfactant self-assembling in the gas phase as charged aggregates have been carried out until now. This lack of interest is disappointing in view of the remarkable theoretical and practical importance of the inherent knowledge. The absence of surfactant–solvent interactions makes it easier to study the role of surfactant–surfactant forces in determining their peculiar self-assembling features as well as the ability of these assemblies to incorporate selected solubilizate molecules. Thus, th…

surfactants charged aggregates gas phase reverse micelles mass spectrometry ESI-MS
researchProduct

Surfactant self-assembling in gas phase: electrospray ionization- and matrix-assisted laser desorption/ionization-mass spectrometry of singly charged…

2005

The self-assembling of sodium bis (2-ethylhexyl) sulfosuccinate (AOT) in gas phase has been investigated by electrospray ionization- and matrix-assisted laser desorption/ionization mass spectrometry. Large surfactant clusters with an aggregation number close to that found in apolar media have been observed either as positive or negative ions. Moreover, the marked predominance of singly charged species as well as preliminary theoretical calculations strongly suggest an aggregate structure characterized by an internal hydrophilic core hosting the extra charge surrounded by an apolar shell constituted by the surfactant alkyl chains. This structure is similar to that of the more familiar revers…

Aggregation numberChemistrygas-phase self-assemblyElectrospray ionizationsurfactantESI-MS and ESI-MS/MSAnalytical chemistryMass spectrometryMicelleMALDI-MSIonMatrix-assisted laser desorption/ionizationPulmonary surfactantIonizationSpectroscopyJournal of mass spectrometry : JMS
researchProduct