AbstractThis work describes the characterization and potential applications of a silica-based anion-exchange phase prepared by a two-step modification process that incorporates a propylpyridinium group. The effects of pH and eluent concentration on anion separation were examined using 150mm×3.9mm HPLC columns packed with the new phase. The mobile phase pH values ranged from 3.8 to 6.6 using phthalic acid/Tris solutions. The best separation was achieved using 2.5mmolL−1 phthalate/2.4mmolL−1 Tris solution at pH 4.2 as mobile phase with non-suppressed conductivity detection. The new stationary phase was used for the separation of some inorganic and organic anions showing good resolution. The stability of the silica-based anion exchange phase w...
High performance liquid chromatography is an important analytical technique used for the separation ...
High performance liquid chromatography is an important analytical technique used for the separation ...
Received: 18.05.2021. Revised: 16.11.2021. Accepted: 09.12.2021. Available online: 11.12.2021.This m...
Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)Fundação de Amparo à Pesquisa do...
This work describes the preparation of an anion-exchange phase based on silica, using a two-step mod...
A polar-copolymerized method to prepare silica-based anion exchanger for ion chromatographyA novel s...
Understanding the interactions at the modified silica interface used as a stationary phase in variou...
A novel anion-exchange resin containing three amine groups was prepared by reaction of a chloromethy...
Inorganic and organic anions can be separated on an ordinary silica C18 column using a mobile phase ...
[[abstract]]A ploy(2-methylallyl) copolymerized silica-based anion exchanger containing tetraqlkylam...
New stationary phases for chromatographic separation of anions, obtained by loading liposomes made f...
Ion chromatography on short permanently coated monolithic columns has been investigated with the aim...
The retention behavior of inorganic anions on a triazole-based stationary phase was first examined i...
Zipax-SAX pellicular beads are used as the anion-exchanger material ; a high-pressure packing techni...
This work was financially supported by the Ministry of Science and Higher Education of the Russian F...
High performance liquid chromatography is an important analytical technique used for the separation ...
High performance liquid chromatography is an important analytical technique used for the separation ...
Received: 18.05.2021. Revised: 16.11.2021. Accepted: 09.12.2021. Available online: 11.12.2021.This m...
Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)Fundação de Amparo à Pesquisa do...
This work describes the preparation of an anion-exchange phase based on silica, using a two-step mod...
A polar-copolymerized method to prepare silica-based anion exchanger for ion chromatographyA novel s...
Understanding the interactions at the modified silica interface used as a stationary phase in variou...
A novel anion-exchange resin containing three amine groups was prepared by reaction of a chloromethy...
Inorganic and organic anions can be separated on an ordinary silica C18 column using a mobile phase ...
[[abstract]]A ploy(2-methylallyl) copolymerized silica-based anion exchanger containing tetraqlkylam...
New stationary phases for chromatographic separation of anions, obtained by loading liposomes made f...
Ion chromatography on short permanently coated monolithic columns has been investigated with the aim...
The retention behavior of inorganic anions on a triazole-based stationary phase was first examined i...
Zipax-SAX pellicular beads are used as the anion-exchanger material ; a high-pressure packing techni...
This work was financially supported by the Ministry of Science and Higher Education of the Russian F...
High performance liquid chromatography is an important analytical technique used for the separation ...
High performance liquid chromatography is an important analytical technique used for the separation ...
Received: 18.05.2021. Revised: 16.11.2021. Accepted: 09.12.2021. Available online: 11.12.2021.This m...