JOURNAL ARTICLE

Novel Near-Infrared Luminescent Hybrid Materials Covalently Linking with Lanthanide [Nd(III), Er(III), Yb(III), and Sm(III)] Complexes via a Primary β-Diketone Ligand: Synthesis and Photophysical Studies

Xianmin GuoHuadong GuoLianshe FuLuís D. CarlosR.A.Sa FerreiraLining SunRuiping DengHongjie Zhang

Year: 2009 Journal:   The Journal of Physical Chemistry C Vol: 113 (28)Pages: 12538-12545   Publisher: American Chemical Society

Abstract

A series of novel, colorless, and transparent sol−gel derived hybrid materials Ln-DBM-Si covalently grafted with Ln(DBM−OH)3·2H2O (where DBM−OH = o-hydroxydibenzoylmethane, Ln = Nd, Er, Yb, and Sm) were prepared through the primary β-diketone ligand DBM−OH. The structures and optical properties of Ln-DBM-Si were studied in detail. The investigation results revealed that the lanthanide complexes were successfully in situ grafted into the corresponding hybrids Ln-DBM-Si. Upon excitation at the maximum absorption of ligands, the resultant materials displayed excellent near-infrared luminescence. Meanwhile, a model for the indirect excitation mechanism was introduced to discuss the ligands-to-Ln3+ intramolecular energy transfer. Furthermore, the radiative properties of the Nd3+ ion and the Er3+ ion in Ln-DBM-Si are evaluated by applying the Judd-Ofelt analysis.

Keywords:
Lanthanide Luminescence dBm Ligand (biochemistry) Covalent bond Intramolecular force Materials science Photoluminescence Photochemistry Ion Hybrid material Chemistry Physical chemistry Crystallography Stereochemistry Nanotechnology Optoelectronics Organic chemistry

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103
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0.91
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Citation History

Topics

Lanthanide and Transition Metal Complexes
Physical Sciences →  Materials Science →  Materials Chemistry
Luminescence Properties of Advanced Materials
Physical Sciences →  Materials Science →  Materials Chemistry
Magnetism in coordination complexes
Physical Sciences →  Materials Science →  Electronic, Optical and Magnetic Materials

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