Results 141 to 150 of about 512 (161)
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Application of the LSER method for investigation of intermolecular interactions of porous polymer surface with organic molecules

Protection of Metals and Physical Chemistry of Surfaces, 2013
The contributions of intermolecular interactions into the molar change of free energy -ΔF of sorption on the surface of porous polymers of various natures were studied by the linear solvation-energy relationship (LSER) method. It was shown that a high correlation coefficient does not ensure reliability of the results obtained.
V. Yu. Gus’kov   +2 more
openaire   +1 more source

The characterization of an active carbon in terms of selectivity towards volatile organic compounds using an LSER approach

Fuel, 2000
Abstract In order to improve the understanding of the mechanisms involved in the adsorption of volatile organic compounds (VOCs) on coal materials, and in order to predict selectivity values between given pairs of VOCs, an LSER (Linear Solvation Energy Relationship) approach has been used.
P Burg   +4 more
openaire   +1 more source

Evaluation of column characteristics in RPLC using linear solvation energy relationships (LSERs)

Journal of Separation Science, 2003
AbstractAn overview is given of our studies on the use of linear solvation energy relationships (LSERs) for evaluation and comparison of RP‐HPLC columns. From among the columns investigated, 19 columns of different types, viz. 12 narrow‐pore, 7 wide‐pore silicas containing various ligands (C18, C8, C4, CN) and obtained from 7 manufacturers, were ...
openaire   +1 more source

Characterization of Calixarene/Ionic Liquid Mixture as Gas Chromatographic Stationary Phase through Thermodynamic Parameters and LSER

Chromatographia, 2012
A mixture of 5,11,17,23-tetra-tert-butyl-25,26,27,28-tetraethoxycarbonylmethyloxy calix[4]arene (C[4]TECM) and 1-octyl-3-methylimidazolium tetrafluoroborate ionic liquid (OmI m + BF4 −) has been employed as stationary phases in capillary gas chromatography.
Jie-hua Shi, Qian-qian Jia, Shui-xing Xu
openaire   +1 more source

Limiting Activity Coefficients and Gas–Liquid Partition Coefficients of Various Solutes in Piperidinium Ionic Liquids: Measurements and LSER Calculations

The Journal of Physical Chemistry B, 2011
This paper is a continuation of our systematic investigations on piperidinium ionic liquids and presents new data on activity coefficients at infinite dilution for 43 solutes: linear and branched alkanes, cycloalkanes, alkenes, alkynes, benzene, alkylbenzenes, alcohols, water, thiophene, tetrahyrdofuran (THF), methyl tert-butyl ether (MTBE), linear ...
Kamil, Paduszyński, Urszula, Domańska
openaire   +2 more sources

Retention mechanism of a cholesterol-coated C18 stationary phase: van’t Hoff and Linear Solvation Energy Relationships (LSER) approaches

Journal of Chromatography A, 2011
This study examines the effect of temperature on the dynamic cholesterol coating of a C18 stationary phase and the effect of this coating on the retention mechanism. In general, an increase in temperature results in a decrease in the mass of cholesterol coated on the stationary phase. Typically, an increase in temperature from 25°C to 55°C results in a
Phillip B, Ogden, Jason W, Coym
exaly   +3 more sources

Применение метода LSER для изучения межмолекулярных взаимодействий поверхности пористых полимеров с органическими молекулами

Физикохимия поверхности и защита материалов, 2013
Исследованы вклады межмолекулярных взаимодействий в мольное изменение свободной энергии сорбции на поверхности пористых полимеров различной природы методом linear solvatation energy relationship (LSER). Показано, что высокий коэффициент корреляции не гарантирует достоверность получаемых результатов.
openaire   +1 more source

Improvement of Deformation Analysis Method Using Lser-Scanned Point Cloud of Structure

The Proceedings of The Computational Mechanics Conference, 2022
Hibiya HARAKI   +2 more
openaire   +1 more source

Extraction of Pyruvic Acid: LSER Modeling

2015
Niraj Thakre, Dharm Pal, Keshav, Amit
openaire   +1 more source

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