2016
DOI: 10.1039/c5nj03082j
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Separation and complexation of palladium(ii) with a new soft N-donor ligand 6,6′-bis(5,6-dinonyl-1,2,4-triazin-3-yl)-2,2′-bipyridine (C9-BTBP) in nitric acid medium

Abstract: Both 1 : 1 and 2 : 1 Pd–C9-BTBP complexes were found in solution by 1H NMR titration.

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Cited by 28 publications
(24 citation statements)
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“…The decisive difference between isomer C and D is that in the former, the two uncoordinated pyridine moieties (5 and 6) are connected through a chain of C atoms, C5 and C6, while in isomer D , the two uncoordinated pyridine groups (3 and 5) are interconnected by C5, N4 and C3. From 3 J and 4 J 1 H 13 C long‐range coupling experiments, we can unequivocally assign the NMR spectra to the isomer C , having the same N Py N2 TZ coordination as the other Pd–PyTZ complexes and other PyTZ, , , , or Py 3 TZ complexes with bidentate coordination , , …”
Section: Resultsmentioning
confidence: 91%
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“…The decisive difference between isomer C and D is that in the former, the two uncoordinated pyridine moieties (5 and 6) are connected through a chain of C atoms, C5 and C6, while in isomer D , the two uncoordinated pyridine groups (3 and 5) are interconnected by C5, N4 and C3. From 3 J and 4 J 1 H 13 C long‐range coupling experiments, we can unequivocally assign the NMR spectra to the isomer C , having the same N Py N2 TZ coordination as the other Pd–PyTZ complexes and other PyTZ, , , , or Py 3 TZ complexes with bidentate coordination , , …”
Section: Resultsmentioning
confidence: 91%
“…The 5‐aryl‐3‐(2′‐pyridyl)‐1,2,4‐triazine moieties themselves have been used for decades as versatile ligands for transition‐metal complexes with some medical or technical applications. The most important application is probably that of 3‐(2‐pyridyl)‐5,6‐diphenyl‐1,2,4‐triazine‐ p , p′ ‐disulfonic acid [PyTZ(HO 2 SOPh) 2 ], following the nomenclature in Scheme , also called FerroZine™, for the colorimetric detection of Fe II in biological or other systems .…”
Section: Introductionmentioning
confidence: 99%
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“…Phenanthroline‐ and 2,2′‐bipyridine‐based ligands are known to form strong complexes with a variety of metal ions, especially d‐block elements, for example, palladium, copper, iron, and silver, which poses a major problem in the selective recovery of f‐block elements, for example, trivalent lanthanides from rare‐earth‐element‐bearing minerals and used electronic parts and actinides from used nuclear fuel . Because phenanthroline‐based ligands 1 and 2 exhibit a strong preference for Ln III with larger ionic radii, the extraction of the following interfering d‐block metal ions, Ag + , Pd 2+ , Fe 3+ and Cu 2+ , in addition to four different Ln III was investigated.…”
Section: Resultsmentioning
confidence: 99%