New -substituted diphenylphosphinic amide ligands: synthesis, characterization and complexation with Zn, Cu and Y
Phosphinic amide derivatives have drawn significant attention in coordination chemistry and have been incorporated into the design and synthesis of new ligands. In this work, the combination of the diphenylphosphinic amide group with quinoline, pyridine and phosphoramidate moieties gave rise to four...
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Veröffentlicht in: | New journal of chemistry 2019-09, Vol.43 (35), p.13881-1389 |
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Zusammenfassung: | Phosphinic amide derivatives have drawn significant attention in coordination chemistry and have been incorporated into the design and synthesis of new ligands. In this work, the combination of the diphenylphosphinic amide group with quinoline, pyridine and phosphoramidate moieties gave rise to four new classes of ligands (
6
,
8
,
11
and
13
), in moderate to good yields. The coordination properties were tested with Zn
2+
, Cu
2+
and Y
3+
by nuclear magnetic resonance (NMR), fluorescence and infrared (IR) spectroscopies. The molar proportions between metal ions and ligands (M/L) were estimated from the spectrofluorimetric titration curves and have demonstrated preponderant formation of ML
2
-type complexes. From the IR spectra, the variations of wavenumber and/or intensity of the absorption bands of ligands and complexes pointed out the participation of P&z.dbd;O, C&z.dbd;O, C&z.dbd;N(pyridine) and N-H functional groups as the possible coordination sites. The results have demonstrated the capacity of some of the synthesized substances to act as ligands, which can be useful for several applications in the field of coordination chemistry.
Phosphinic amide derivatives have drawn significant attention in coordination chemistry and have been incorporated into the design and synthesis of new ligands. |
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ISSN: | 1144-0546 1369-9261 |
DOI: | 10.1039/c9nj02829c |