2019
DOI: 10.1002/aoc.4992
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Cu(II)‐promoted cyclization of hydrazonophthalazine to triazolophthalazine; Synthesis and structure diversity of six novel Cu(II)‐triazolophthalazine complexes

Abstract: A novel route for the synthesis of Cu(II)-triazolophthalazine complexes using the Cu(II)-promoted cyclization dehydrogenation reactions of hydrazonophthalazines under reflux was presented. Two hydrazonophthalazines were cyclized to the corresponding triazolophthalazine ligands, 3-pyridin-2-yl-3,10b-dihydro- [1,2,4]triazolo[3,4-a]phthalazine (TPP) and 3-(3,10b-dihydro-[1,2,4]triazolo[3,4-a]phthalazin-3-yl)-benzoic acid (TP3COOH), followed by in situ complexation with Cu(II) yielding six novel Cu(II)-triazolopht… Show more

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Cited by 3 publications
(4 citation statements)
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“…In another instance, the reaction with metal ions with stable oxidation states such as holmium(III), the ligand works as a neutral N-chelator [57]. On the other hand, hydrazonophthalazine underwent oxidative cyclization to the corresponding triazolophthalazines in presence of metal ions having well known catalytic activity such as Cu(II) [58]. In the current work, we presented the reactions of two new hydrazonophthalazine ligands with cadmium chloride as shown in Scheme 1.…”
Section: Resultsmentioning
confidence: 97%
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“…In another instance, the reaction with metal ions with stable oxidation states such as holmium(III), the ligand works as a neutral N-chelator [57]. On the other hand, hydrazonophthalazine underwent oxidative cyclization to the corresponding triazolophthalazines in presence of metal ions having well known catalytic activity such as Cu(II) [58]. In the current work, we presented the reactions of two new hydrazonophthalazine ligands with cadmium chloride as shown in Scheme 1.…”
Section: Resultsmentioning
confidence: 97%
“…Hydrazonophthalazine ligands are powerful nitrogen chelators due to the availability of different coordinating sites, including the phthalazine and hydrazone nitrogen atoms. This class of ligands can coordinate to the metal ion in different ways depending on the nature of metal ion and reaction conditions [15,57,58]. In the case of easily oxidized metal ions such as Co(II), which can undergo aerobic oxidation in the presence of a strong ligand field, the ligand can lose the labile NH proton and work as a negatively charged Nchelator [15].…”
Section: Resultsmentioning
confidence: 99%
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