Mesogenic and Luminescent Properties of Lyotropic Liquid Crystals Containing Eu(III) and Tb(III) Ions
Lyotropic metallomesogens containing trivalent rare-earth metal ions have unique attractive behavior due to the combination of some specific properties of the lanthanide ions with anisotropic supramolecular organization liquid crystal and provide new promises in biochemistry and materials science. I...
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Published in: | The journal of physical chemistry. B Vol. 116; no. 2; pp. 735 - 742 |
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Abstract | Lyotropic metallomesogens containing trivalent rare-earth metal ions have unique attractive behavior due to the combination of some specific properties of the lanthanide ions with anisotropic supramolecular organization liquid crystal and provide new promises in biochemistry and materials science. In this article, we have studied the liquid crystal and luminescence properties of lyotropic systems containing EuIII and TbIII ions based on nonionic surfactants. The type, the structural parameters of the mesophases, and the structure of a liquid crystal complex have been investigated using polarized optical microscopy (POM), X-ray diffraction, and Fourier transform infrared. In addition, on the basis of the luminescence lifetime, the structure of the first coordination sphere was determined. The results obtained based on time-resolved spectroscopy data are discussed in the light of the influence ligand environment, ion type, and the type of supramolecular organization on the luminescence efficiency of lyotropic lanthanide containing systems. The first time was reported for EuIII complexes increasing the luminescence efficiency in the hexagonal phase compared to the lamellar mesophase. |
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AbstractList | Lyotropic metallomesogens containing trivalent rare-earth metal ions have unique attractive behavior due to the combination of some specific properties of the lanthanide ions with anisotropic supramolecular organization liquid crystal and provide new promises in biochemistry and materials science. In this article, we have studied the liquid crystal and luminescence properties of lyotropic systems containing Eu(III) and Tb(III) ions based on nonionic surfactants. The type, the structural parameters of the mesophases, and the structure of a liquid crystal complex have been investigated using polarized optical microscopy (POM), X-ray diffraction, and Fourier transform infrared. In addition, on the basis of the luminescence lifetime, the structure of the first coordination sphere was determined. The results obtained based on time-resolved spectroscopy data are discussed in the light of the influence ligand environment, ion type, and the type of supramolecular organization on the luminescence efficiency of lyotropic lanthanide containing systems. The first time was reported for Eu(III) complexes increasing the luminescence efficiency in the hexagonal phase compared to the lamellar mesophase. Lyotropic metallomesogens containing trivalent rare-earth metal ions have unique attractive behavior due to the combination of some specific properties of the lanthanide ions with anisotropic supramolecular organization liquid crystal and provide new promises in biochemistry and materials science. In this article, we have studied the liquid crystal and luminescence properties of lyotropic systems containing EuIII and TbIII ions based on nonionic surfactants. The type, the structural parameters of the mesophases, and the structure of a liquid crystal complex have been investigated using polarized optical microscopy (POM), X-ray diffraction, and Fourier transform infrared. In addition, on the basis of the luminescence lifetime, the structure of the first coordination sphere was determined. The results obtained based on time-resolved spectroscopy data are discussed in the light of the influence ligand environment, ion type, and the type of supramolecular organization on the luminescence efficiency of lyotropic lanthanide containing systems. The first time was reported for EuIII complexes increasing the luminescence efficiency in the hexagonal phase compared to the lamellar mesophase. Lyotropic metallomesogens containing trivalent rare-earth metal ions have unique attractive behavior due to the combination of some specific properties of the lanthanide ions with anisotropic supramolecular organization liquid crystal and provide new promises in biochemistry and materials science. In this article, we have studied the liquid crystal and luminescence properties of lyotropic systems containing Eu super(III) and Tb super(III) ions based on nonionic surfactants. The type, the structural parameters of the mesophases, and the structure of a liquid crystal complex have been investigated using polarized optical microscopy (POM), X-ray diffraction, and Fourier transform infrared. In addition, on the basis of the luminescence lifetime, the structure of the first coordination sphere was determined. The results obtained based on time-resolved spectroscopy data are discussed in the light of the influence ligand environment, ion type, and the type of supramolecular organization on the luminescence efficiency of lyotropic lanthanide containing systems. The first time was reported for Eu super(III) complexes increasing the luminescence efficiency in the hexagonal phase compared to the lamellar mesophase. |
Author | Gubaydullin, Aidar T Selivanova, Natalia M Lobkov, Vladimir S Galyametdinov, Yury G Galeeva, Aliya I |
AuthorAffiliation | Kazan National Research Technological University Kazan Scientific Center of the Russian Academy of Sciences |
AuthorAffiliation_xml | – name: Kazan National Research Technological University – name: Kazan Scientific Center of the Russian Academy of Sciences |
Author_xml | – sequence: 1 givenname: Natalia M surname: Selivanova fullname: Selivanova, Natalia M email: natsel@mail.ru – sequence: 2 givenname: Aliya I surname: Galeeva fullname: Galeeva, Aliya I – sequence: 3 givenname: Aidar T surname: Gubaydullin fullname: Gubaydullin, Aidar T – sequence: 4 givenname: Vladimir S surname: Lobkov fullname: Lobkov, Vladimir S – sequence: 5 givenname: Yury G surname: Galyametdinov fullname: Galyametdinov, Yury G |
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SubjectTerms | Anisotropy B: Macromolecules, Soft Matter Lanthanides Liquid crystals Luminescence Materials science Mesophase Organizations Rare earth metals |
Title | Mesogenic and Luminescent Properties of Lyotropic Liquid Crystals Containing Eu(III) and Tb(III) Ions |
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