2016
DOI: 10.1002/zaac.201600006
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Synthesis and Characterization of Tetrahedral Zinc(II) Complexes with 3, 6,7‐Triamino‐7H‐[1, 2,4]triazolo[4, 3‐b][1, 2,4]triazole as Nitrogen‐Rich Ligand

Abstract: O (4). The zinc species were prepared in a straightforward and inexpensive synthesis. The complexes 2-4 were structurally characterized using X-ray diffraction. Additionally, the

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Cited by 9 publications
(6 citation statements)
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“…. O contacts, as in our case, are rare, yet the FOJTAZ [73] and IJAMEN [74] examples also show the outer sphere ligand formally completing a trigonal bipyramidal environment, as in 6. It must be also stated that the perchlorate anion is firmly hold in that position also thanks to NH .…”
Section: Description Of the Crystal Structure Of [Znl2(cl)](clo4)supporting
confidence: 59%
“…. O contacts, as in our case, are rare, yet the FOJTAZ [73] and IJAMEN [74] examples also show the outer sphere ligand formally completing a trigonal bipyramidal environment, as in 6. It must be also stated that the perchlorate anion is firmly hold in that position also thanks to NH .…”
Section: Description Of the Crystal Structure Of [Znl2(cl)](clo4)supporting
confidence: 59%
“…To satisfy these requirements, substantial number of nitrogen‐rich compounds were synthesized due to their high densities and heats of formation, which principally attributed to the presence of abundant N–N bonds and C–N bonds as well as the extensive hydrogen bonds. Most of them exhibited excellent properties and therefore shown expansive application prospect in multiple fields as expected ,…”
Section: Introductionmentioning
confidence: 71%
“…Metal complexes bearing triazole ligands are also considered one of the most biologically active materials. These complexes can be utilized in various agricultural and pharmaceutical applications because their activity can be easily tuned by varying metals, ancillary ligands, and coordination geometries. Particularly, zinc (Zn) complexes have been extensively investigated due to their chemical stability and physiological merits. Zinc ions exist in many chemical and biological systems as Zn 2+ species with a d 10 configuration, making them difficult to either oxidize or reduce. Since Zn 2+ ions can act as Lewis acids, they have a strong tendency to form stable adducts with triazole ligands.…”
Section: Introductionmentioning
confidence: 99%
“… 12 14 Particularly, zinc (Zn) complexes have been extensively investigated due to their chemical stability and physiological merits. 15 20 Zinc ions exist in many chemical and biological systems as Zn 2+ species with a d 10 configuration, making them difficult to either oxidize or reduce. Since Zn 2+ ions can act as Lewis acids, they have a strong tendency to form stable adducts with triazole ligands.…”
Section: Introductionmentioning
confidence: 99%