4.6 Article

Luminescent group 12 metal tetracarboxylate networks as probe for metal ions

期刊

RSC ADVANCES
卷 4, 期 90, 页码 49090-49097

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ROYAL SOC CHEMISTRY
DOI: 10.1039/c4ra05275g

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资金

  1. 973 Program [2012CB821701]
  2. Ministry of Education of China [IRT1156]
  3. National Science Fund for Distinguished Young Scholars [20925101]
  4. Shanxi Fund for Returned Overseas Scholars

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Hydrothermal in situ decomposition of DMF generated three [NH2(CH3)(2)](+) cation templated anionic zinc and cadmium terphenyl-3,2 '',5 '',3'-tetracarboxylate (tpta) frameworks. Compound 1 shows a kgd topological layer constructed by 6-connected paddlewheel-type [Zn-2(CO2)(4)] SUBs and 3-connected tpta groups. Compound 2 has a 3D sra network constructed by the zigzag chains of metal centers and tpta groups. Compound 3 adopts a new (4,7)-connected topological network with four types of nodes. Compounds 1-3 show two blue phosphorescent emission bands attributed to ligand centered transitions perturbed by metal ions, which displays significant temperature-dependent behavior. The higher energy emissions are red-shifted and weakened with increasing temperature, while the lower energy emissions increase in intensity and finally become the main emission bands; the CIE coordinates for 1 are changed with decreasing temperature from blue to greenish blue. Interestingly, 1 could selectively detect traces of Ca2+ ions at ppm level in a pyridine suspension, which makes it more suitable to be a luminescent probe for sensing Ca+ ions.

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