REAL

Investigation of retention mechanism of resorcinarene based cavitands by linear and nonlinear chromatography

Bartó, Endre and Prauda, Ibolya and Kilár, Ferenc and Kiss, Ibolya and Felinger, Attila (2016) Investigation of retention mechanism of resorcinarene based cavitands by linear and nonlinear chromatography. JOURNAL OF CHROMATOGRAPHY A, 1456. pp. 152-161. ISSN 0021-9673

[img] Text
a138_JCA_16.pdf
Restricted to Repository staff only

Download (1MB) | Request a copy

Abstract

Cavitands are cavity-shaped cyclic oligomers and they can create host–guest interactions with various analytes, therefore they have applications in supramolecular chemistry, nanoscale reactions, chromatographic separations, drug encapsulation and delivery, biochemistry. The investigation of the chromatographic behavior of large molecules, such as resorcinarenes and cavitands is meager up to now. To understand the retention of resorcinarenes and cavitands in liquid chromatography, we studied their retention mechanism by the thermodynamic parameters calculated from the van’t Hoff equation and by generation of an adsorption isotherm, which can describe the adsorption of the solute on the stationary phase surface. We compared the thermodynamics of the retention for cyclic oligomers in acetonitrile:water and methanol:water mobile phases. Furthermore, we determined the equilibrium adsorption isotherm by inverse method and we made an error analysis of the estimation obtained with the inverse method to ascertain the validity of the obtained isotherm parameters over a broader concentration range.

Item Type: Article
Additional Information: Megosztott elsőszerzőség Bartó E és Prauda I között
Uncontrolled Keywords: Adsorption isotherm; Inverse method; van’t Hoff equation; RETENTION MECHANISM; Resorcinarene based cavitands
Subjects: Q Science / természettudomány > QD Chemistry / kémia
SWORD Depositor: MTMT SWORD
Depositing User: MTMT SWORD
Date Deposited: 13 Feb 2017 14:48
Last Modified: 13 Feb 2017 14:48
URI: http://real.mtak.hu/id/eprint/48189

Actions (login required)

Edit Item Edit Item