4.7 Article

Three rare-earth incorporating 6-peroxotantalo 4-selenates and catalytic activities for imidation reaction

Journal

DALTON TRANSACTIONS
Volume 51, Issue 26, Pages 9988-9993

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/d2dt01332k

Keywords

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Funding

  1. National Natural Science Foundation of China [21671056, 22071045, 22001034]
  2. Excellent Youth Science Fund Project of Henan Province [202300410042]
  3. Research Fund Program of Guangdong Provincial Key Lab of Green Chemical Product Technology [GC201116]

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Functionalization with belt lanthanide groups enables the crystallization and structural characterization of homo-metallic selenotantalates. These structures serve as effective precursors for the synthesis of new polyoxometalates with desirable properties like photoluminescence and catalytic activities.
Functionalization with belt lanthanide groups allows for the crystallization and structural characterization of homometallic selenotantalates, CsK[Ln(H2O)(6)Se-4(TaO2)(6)(OH)(3)O-18]center dot nH(2)O (Ln = Eu/Gd, n = 14 (STD-Eu, STD-Gd) and Ln = Lu, n = 12 (STD-Lu)). The basket-shaped {Se-4(TaO2)(6)} archetype is assembled in a simple one-pot reaction of Na(2)SeO(3 )and K-8[Ta6O19]center dot 17H(2)O in acidic aqueous medium (pH 2) and in the presence of hydrogen peroxide. This unit has been proven to be an effective precursor for the preparation of a range of new POMs containing the {Se-4(TaO2)(6)} unit. The lanthanide derivatives STD-Eu, STD-Gd and STD-Lu have been fully characterized with single-crystal X-ray diffraction, IR spectroscopy, TG analysis and PXRD in the solid state. The photoluminescence and lifetime decay behaviours of STD-Eu have been studied at room temperature, and the photoluminescence spectrum displays the characteristic emission of the Eu3+ cation. In addition, the catalytic activities of STD-Eu, STD-Gd and STD-Lu on the reaction of phthalic anhydride with phenylamines have been investigated. STD-Eu shows good catalytic activities for imidation reactions.

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