JOURNAL ARTICLE

Synthesis, structure and optical properties of rare-earth benzene carboxylates

Partha MahataK. RamyaSrinivasan Natarajan

Year: 2007 Journal:   Dalton Transactions Pages: 4017-4017   Publisher: Royal Society of Chemistry

Abstract

Two series of rare-earth isophthalates of the general formula, [M(2)(H(2)O)][{C(6)H(4)(COO)(2)}(2){C(6)H(4)(COOH)(COO)}(2)].H(2)O, M=La (I), Pr (Ia), and Nd (Ib) and [M(2)(H(2)O)(2)][{C(6)H(4)(COO)(2)}(3)].H(2)O, M=Y (II), Gd (IIa), and Dy (IIb) have been prepared by the reaction of the corresponding trivalent lanthanide salts and isophthalic acid under mild hydrothermal conditions. The La (I), Pr (Ia) and Nd (Ib) have MO(9) polyhedra connected to the isophthalate anions forming a two-dimensional structure, whereas Y (II), Gd (IIa) and Dy (IIb) have MO(7) and MO(8) polyhedral units connected to the isophthalate anions forming a different, but related two-dimensional structure. Both the structures are stabilized by hydrogen bonding and pi...pi/CH...pi interactions. Partial substitution of Eu and Tb (2 and 4%) at the La (I) and Y (II) sites give rise to characteristic red/pink or green luminescence, indicating a ligand-sensitized metal-centered emission. The Nd (Ib) compound shows interesting UV and blue emission through an up-conversion process.

Keywords:
Lanthanide Crystallography Isophthalic acid Luminescence Chemistry Hydrothermal circulation Ligand (biochemistry) Benzene Rare earth Hydrogen bond Stereochemistry Materials science Molecule Ion Mineralogy Terephthalic acid Organic chemistry

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2.32
FWCI (Field Weighted Citation Impact)
32
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0.89
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Citation History

Topics

Lanthanide and Transition Metal Complexes
Physical Sciences →  Materials Science →  Materials Chemistry
Metal-Organic Frameworks: Synthesis and Applications
Physical Sciences →  Chemistry →  Inorganic Chemistry
Magnetism in coordination complexes
Physical Sciences →  Materials Science →  Electronic, Optical and Magnetic Materials

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