Encapsulation of Erbium(III) and Thulium(III) Nanocomplexes Containing 18- and 20-Membered Dioxa Tetraaza Macryclic Ligands Within the Framework of Zeolite
Identifieur interne : 000129 ( Istex/Checkpoint ); précédent : 000128; suivant : 000130Encapsulation of Erbium(III) and Thulium(III) Nanocomplexes Containing 18- and 20-Membered Dioxa Tetraaza Macryclic Ligands Within the Framework of Zeolite
Auteurs : Mohammad Yousefi [Iran] ; Masoud Salavati-Niasari [Iran]Source :
- High Temperature Materials and Processes [ 0334-6455 ] ; 2012-12-14.
Descripteurs français
English descriptors
- KwdEn :
- Absolute ethanol, Analytical data, Cation, Chem, Complex nanoparticles, Dehydration temperature, Diamine, Dioxa, Direct titration, Elemental analysis, Encapsulated, Encapsulation, Ethanol, External surface, Ionic radii, Islamic azad university, Lanthanide, Lanthanide complexes, Lanthanide contents, Ligand, Lnl1, Macrocyclic, Macrocyclic schiff base, Magnetic stirrer, Metal ions, Methanol, Molar conductivities, Molar ratio, Monolayer equivalent area, Nano science, Nano technology, Nanoparticles, Nanoparticles encapsulated, Neat complexes, Oxygen donors, Perchlorate, Perchlorate anions, Pore volume, Relative intensities, Room temperature, Schiff, Small cations, Surface area, Template synthesis, Tetraaza, Tetraaza dioxa macrocyclic, Tetraaza dioxa macrocyclic complexes, Transition metal complexes, Unit cell formula, Zeolite, Zeolite framework, Zeolite matrix.
- Teeft :
- Absolute ethanol, Analytical data, Cation, Chem, Complex nanoparticles, Dehydration temperature, Diamine, Dioxa, Direct titration, Elemental analysis, Encapsulated, Encapsulation, Ethanol, External surface, Ionic radii, Islamic azad university, Lanthanide, Lanthanide complexes, Lanthanide contents, Ligand, Lnl1, Macrocyclic, Macrocyclic schiff base, Magnetic stirrer, Metal ions, Methanol, Molar conductivities, Molar ratio, Monolayer equivalent area, Nano science, Nano technology, Nanoparticles, Nanoparticles encapsulated, Neat complexes, Oxygen donors, Perchlorate, Perchlorate anions, Pore volume, Relative intensities, Room temperature, Schiff, Small cations, Surface area, Template synthesis, Tetraaza, Tetraaza dioxa macrocyclic, Tetraaza dioxa macrocyclic complexes, Transition metal complexes, Unit cell formula, Zeolite, Zeolite framework, Zeolite matrix.
Abstract
Zeolite framework stabilized erbium(III) and thulium(III) complex nanoparticles was prepared for the first time by using a two step procedure: the ion exchange of Ln3+ (Ln: Er and Tm) with the extra framework Na+ ions in zeolite-Y, the template synthesis of 2,6-diformyl-4-methylphenol with different diamines. Analysis of the data indicated that the Ln(III) complexes has been encapsulated within the nanocavity of zeolite Y and exhibit different property from those of the free complexes, which can arise from distortions caused by steric effects due to the presence of sodium cations, or from interactions with the zeolite matrix.
Url:
DOI: 10.1515/htmp-2012-0001
Affiliations:
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<term>Relative intensities</term>
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<front><div type="abstract" xml:lang="en">Zeolite framework stabilized erbium(III) and thulium(III) complex nanoparticles was prepared for the first time by using a two step procedure: the ion exchange of Ln3+ (Ln: Er and Tm) with the extra framework Na+ ions in zeolite-Y, the template synthesis of 2,6-diformyl-4-methylphenol with different diamines. Analysis of the data indicated that the Ln(III) complexes has been encapsulated within the nanocavity of zeolite Y and exhibit different property from those of the free complexes, which can arise from distortions caused by steric effects due to the presence of sodium cations, or from interactions with the zeolite matrix.</div>
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