Atomfair Diethyl [2,2′-bipyridine]-4,4′-dicarboxylate C16H16N2O4

Description Diethyl [2,2′-bipyridine]-4,4′-dicarboxylate (CAS No. 1762-42-1) is a high-purity bipyridine derivative with the molecular formula C16H16N2O4. This compound, also known by its IUPAC name ethyl 2-(4-ethoxycarbonylpyridin-2-yl)pyridine-4-carboxylate , is a versatile building block in coordination chemistry and material science. Its rigid bipyridine core and ester-functionalized groups make it an excellent ligand for metal-organic frameworks (MOFs), catalysts, and luminescent materials. The product is supplied as a crystalline solid with ??95% purity, verified by HPLC and NMR. Suitable for research in supramolecular chemistry, photovoltaics, and organic electronics. Store in a cool, dry place away from light and moisture.

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Description

Description

Diethyl [2,2′-bipyridine]-4,4′-dicarboxylate (CAS No. 1762-42-1) is a high-purity bipyridine derivative with the molecular formula C16H16N2O4. This compound, also known by its IUPAC name ethyl 2-(4-ethoxycarbonylpyridin-2-yl)pyridine-4-carboxylate, is a versatile building block in coordination chemistry and material science. Its rigid bipyridine core and ester-functionalized groups make it an excellent ligand for metal-organic frameworks (MOFs), catalysts, and luminescent materials. The product is supplied as a crystalline solid with ??95% purity, verified by HPLC and NMR. Suitable for research in supramolecular chemistry, photovoltaics, and organic electronics. Store in a cool, dry place away from light and moisture.

  • CAS No: 1762-42-1
  • Molecular Formula: C16H16N2O4
  • Molecular Weight: 300.31
  • Exact Mass: 300.11100700
  • Monoisotopic Mass: 300.11100700
  • IUPAC Name: ethyl 2-(4-ethoxycarbonylpyridin-2-yl)pyridine-4-carboxylate
  • SMILES: CCOC(=O)C1=CC(=NC=C1)C2=NC=CC(=C2)C(=O)OCC
  • Synonyms: 1762-42-1, Diethyl [2,2′-bipyridine]-4,4′-dicarboxylate, DTXSID30477347, Diethyl (2,2′-bipyridine)-4,4′-dicarboxylate, DTXCID30428157

Application

Diethyl [2,2′-bipyridine]-4,4′-dicarboxylate is widely used as a precursor for synthesizing ruthenium-based dyes in dye-sensitized solar cells (DSSCs) due to its strong metal-binding affinity. It also serves as a key ligand in catalytic systems for oxidation and C-C coupling reactions. Researchers utilize this compound to develop luminescent probes and sensors for metal ion detection.

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