Covalent linking of near-infrared luminescent ternary lanthanide (Er3+, Nd3+, Yb3+) complexes on functionalized mesoporous MCM-41 and SBA-15


Autoria(s): Sun LN; Zhang HJ; Peng CY; Yu JB; Meng QG; Fu LS; Liu FY; Guo XM
Data(s)

2006

Resumo

The near-infrared (NIR) luminescent lanthanide ions, such as Er(III), Nd(III), and Yb(III), have been paid much attention for the potential use in the optical communications or laser systems. For the first time, the NIR-luminescent Ln(dbm)(3)phen complexes have been covalently bonded to the ordered mesoporous materials MCM-41 and SBA-15 via a functionalized phen group phen-Si (phen-Si = 5-(N,N-bis-3-(triethoxysilyl)propyl)ureyl-1,10-phenanthroline; dbm = dibenzoylmethanate; Ln = Er, Nd, Yb). The synthesis parameters X = 12 and Y = 6 h (X denotes Ln(dbM)(3)(H2O)(2)/phen-MCM-41 molar ratio or Ln(dbM)(3)(H2O)(2)/phenSBA-15 molar ratio and Y is the reaction time for the ligand exchange reaction; phen-MCM-41 and phenSBA-15 are phen-functionalized MCM-41 and SBA-15 mesoporous materials, respectively) were selected through a systematic and comparative study. The derivative materials, denoted as Ln(dbM)(3)phen-MCM-41 and Ln(dbm)(3)phen-SBA-15 (Ln = Er, Nd, Yb), were characterized by powder X-ray diffraction, nitrogen adsorption/desorption, Fourier transform infrared (FT-IR), elemental analysis, and fluorescence spectra. Upon excitation of the ligands absorption bands, all these materials show the characteristic NIR luminescence of the corresponding lanthanide ions through the intramolecular energy transfer from the ligands to the lanthanide ions.

Identificador

http://ir.ciac.jl.cn/handle/322003/15985

http://www.irgrid.ac.cn/handle/1471x/151701

Idioma(s)

英语

Fonte

Sun LN;Zhang HJ;Peng CY;Yu JB;Meng QG;Fu LS;Liu FY;Guo XM.Covalent linking of near-infrared luminescent ternary lanthanide (Er3+, Nd3+, Yb3+) complexes on functionalized mesoporous MCM-41 and SBA-15,JOURNAL OF PHYSICAL CHEMISTRY B,2006,110(14):7249-7258

Palavras-Chave #PORE CONDENSATION BEHAVIOR #BETA-DIKETONATE COMPLEX #HYBRID MATERIALS #MOLECULAR-SIEVES #ERBIUM COMPLEX #ION COMPLEXES #EUROPIUM COMPLEX #LIQUID-CRYSTALS #THIN-FILMS #IN-SITU
Tipo

期刊论文