Evaluation of performance of three different hybrid mesoporous solids based on silica for preconcentration purposes in analytical chemistry: From the study of sorption features to the determination of elements of group IB

Several studies involving the physicochemical interaction of three silica based hybrid mesoporous materials with metal ions of the group IB have been performed in order to employ them for preconcentration purposes in the determination of traces of Cu(II), Ag(I) and Au(III). The three solids were obt...

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Publicado: 2010
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Acceso en línea:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_00399140_v82_n3_p923_Kim
http://hdl.handle.net/20.500.12110/paper_00399140_v82_n3_p923_Kim
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spelling paper:paper_00399140_v82_n3_p923_Kim2023-06-08T15:03:45Z Evaluation of performance of three different hybrid mesoporous solids based on silica for preconcentration purposes in analytical chemistry: From the study of sorption features to the determination of elements of group IB Flow through systems Group IB metals Hybrid mesoporous materials Physicochemical information Solid phase extraction Absorption spectroscopy Atomic absorption spectrometry Chemical analysis Copper compounds Filling Gold compounds Hybrid materials Metal ions Metals Phase separation Silica Silver compounds Analytical methodology Flow-through experiments Flow-through systems Physico-chemical interactions Physicochemical information Pseudo-second order model Solid-phase extraction Thermodynamic equilibria Mesoporous materials Several studies involving the physicochemical interaction of three silica based hybrid mesoporous materials with metal ions of the group IB have been performed in order to employ them for preconcentration purposes in the determination of traces of Cu(II), Ag(I) and Au(III). The three solids were obtained from mesoporous silica functionalized with 3-aminopropyl (APS), 3-mercaptopropyl (MPS) and N-[2-aminoethyl]-3-aminopropyl (NN) groups, respectively. Adsorption capacities for Au, Cu and Ag were calculated using Langmuir's isotherm model and then, the optimal values for the retention of each element onto each one of the solids were found. Physicochemical data obtained under thermodynamic equilibrium and under kinetic conditions - imposed by flow through experiments - allowed the design of simple analytical methodologies where the solids were employed as fillings of microcolumns held in continuous systems coupled on-line to an atomic absorption spectrometry. In order to control the interaction between the filling and the analyte at short times (flow through conditions) and thus, its effect on the analytical signal and the presence of interferences, the initial adsorption velocities were calculated using the pseudo second order model. All these experiments allowed the comparison of the solids in terms of their analytical behaviour at the moment of facing the determination of the three elements. Under optimized conditions mainly given by the features of the filling, the analytical methodologies developed in this work showed excellent performances with limits of detection of 0.14, 0.02 and 0.025 μg L-1 and RSD % values of 3.4, 2.7 and 3.1 for Au, Cu and Ag, respectively. A full discussion of the main findings on the interaction metal ions/fillings will be provided. The analytical results for the determination of the three metals will be also presented. © 2010 Elsevier B.V. 2010 https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_00399140_v82_n3_p923_Kim http://hdl.handle.net/20.500.12110/paper_00399140_v82_n3_p923_Kim
institution Universidad de Buenos Aires
institution_str I-28
repository_str R-134
collection Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA)
topic Flow through systems
Group IB metals
Hybrid mesoporous materials
Physicochemical information
Solid phase extraction
Absorption spectroscopy
Atomic absorption spectrometry
Chemical analysis
Copper compounds
Filling
Gold compounds
Hybrid materials
Metal ions
Metals
Phase separation
Silica
Silver compounds
Analytical methodology
Flow-through experiments
Flow-through systems
Physico-chemical interactions
Physicochemical information
Pseudo-second order model
Solid-phase extraction
Thermodynamic equilibria
Mesoporous materials
spellingShingle Flow through systems
Group IB metals
Hybrid mesoporous materials
Physicochemical information
Solid phase extraction
Absorption spectroscopy
Atomic absorption spectrometry
Chemical analysis
Copper compounds
Filling
Gold compounds
Hybrid materials
Metal ions
Metals
Phase separation
Silica
Silver compounds
Analytical methodology
Flow-through experiments
Flow-through systems
Physico-chemical interactions
Physicochemical information
Pseudo-second order model
Solid-phase extraction
Thermodynamic equilibria
Mesoporous materials
Evaluation of performance of three different hybrid mesoporous solids based on silica for preconcentration purposes in analytical chemistry: From the study of sorption features to the determination of elements of group IB
topic_facet Flow through systems
Group IB metals
Hybrid mesoporous materials
Physicochemical information
Solid phase extraction
Absorption spectroscopy
Atomic absorption spectrometry
Chemical analysis
Copper compounds
Filling
Gold compounds
Hybrid materials
Metal ions
Metals
Phase separation
Silica
Silver compounds
Analytical methodology
Flow-through experiments
Flow-through systems
Physico-chemical interactions
Physicochemical information
Pseudo-second order model
Solid-phase extraction
Thermodynamic equilibria
Mesoporous materials
description Several studies involving the physicochemical interaction of three silica based hybrid mesoporous materials with metal ions of the group IB have been performed in order to employ them for preconcentration purposes in the determination of traces of Cu(II), Ag(I) and Au(III). The three solids were obtained from mesoporous silica functionalized with 3-aminopropyl (APS), 3-mercaptopropyl (MPS) and N-[2-aminoethyl]-3-aminopropyl (NN) groups, respectively. Adsorption capacities for Au, Cu and Ag were calculated using Langmuir's isotherm model and then, the optimal values for the retention of each element onto each one of the solids were found. Physicochemical data obtained under thermodynamic equilibrium and under kinetic conditions - imposed by flow through experiments - allowed the design of simple analytical methodologies where the solids were employed as fillings of microcolumns held in continuous systems coupled on-line to an atomic absorption spectrometry. In order to control the interaction between the filling and the analyte at short times (flow through conditions) and thus, its effect on the analytical signal and the presence of interferences, the initial adsorption velocities were calculated using the pseudo second order model. All these experiments allowed the comparison of the solids in terms of their analytical behaviour at the moment of facing the determination of the three elements. Under optimized conditions mainly given by the features of the filling, the analytical methodologies developed in this work showed excellent performances with limits of detection of 0.14, 0.02 and 0.025 μg L-1 and RSD % values of 3.4, 2.7 and 3.1 for Au, Cu and Ag, respectively. A full discussion of the main findings on the interaction metal ions/fillings will be provided. The analytical results for the determination of the three metals will be also presented. © 2010 Elsevier B.V.
title Evaluation of performance of three different hybrid mesoporous solids based on silica for preconcentration purposes in analytical chemistry: From the study of sorption features to the determination of elements of group IB
title_short Evaluation of performance of three different hybrid mesoporous solids based on silica for preconcentration purposes in analytical chemistry: From the study of sorption features to the determination of elements of group IB
title_full Evaluation of performance of three different hybrid mesoporous solids based on silica for preconcentration purposes in analytical chemistry: From the study of sorption features to the determination of elements of group IB
title_fullStr Evaluation of performance of three different hybrid mesoporous solids based on silica for preconcentration purposes in analytical chemistry: From the study of sorption features to the determination of elements of group IB
title_full_unstemmed Evaluation of performance of three different hybrid mesoporous solids based on silica for preconcentration purposes in analytical chemistry: From the study of sorption features to the determination of elements of group IB
title_sort evaluation of performance of three different hybrid mesoporous solids based on silica for preconcentration purposes in analytical chemistry: from the study of sorption features to the determination of elements of group ib
publishDate 2010
url https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_00399140_v82_n3_p923_Kim
http://hdl.handle.net/20.500.12110/paper_00399140_v82_n3_p923_Kim
_version_ 1768541599644516352