The interaction of a [bis(pyridine)iodine(I)]+ cation with a [bis(pyridine)silver(I)]+ cation, in which an iodonium ion acts as nucleophile by transferring electron density to the silver(I) cation, is reinvestigated herein. No measurable interaction is observed between the cationic species in solution by NMR; DFT reveals that if there is an attractive interaction between this complexes in solution, it is dominantly the π-π interaction of pyridinespeerReviewe
A variety of silver(I) neutral complexes differing in stoichiometries and/or crystallographic arrang...
A variety of silver(I) neutral complexes differing in stoichiometries and/or crystallographic arrang...
A detailed investigation of the influence of counterions on the [N–I–N]+ halogen bond in solution, i...
A detailed investigation of ligand exchange between iodine(I) ions in [N⋯I⋯N]+ halogen-bonded comple...
A study on the bonding in bis-pyridine halonium cations has been carried out using both theoretical ...
Solutions of iodine and iodine chloride with pyridine, 2,6-dimethylpyridine, and 2,4,6-trimethylpyri...
Solutions of iodine and iodine chloride with pyridine, 2,6-dimethylpyridine, and 2,4,6-trimethylpyri...
The silver(I) and iodine(I) complexes of the 2-substituted pyridines 2-(diphenylmethyl)pyridine (1) ...
[Bis(pyridine)iodine(I)]+ complexes offer controlled access to halonium ions under mild conditions. ...
The directionality of the [N–I–N]+ halogen bond makes iodine(I) ions impeccable tools in the design ...
R factor = 0.031; wR factor = 0.073; data-to-parameter ratio = 23.5. The title compound, [Ag2I2(C5H5...
The directionality of the [N–I–N]+ halogen bond makes iodine(I) ions impeccable tools in the design ...
Building upon the first report of a 3-acetaminopyridine-based iodine(I) complex (1b) and its unexpec...
Z-type ligands remove electron density from the metal center, providing tunable electronic control o...
A combination of experiment and theory has been used to explore the mechanisms by which molecular io...
A variety of silver(I) neutral complexes differing in stoichiometries and/or crystallographic arrang...
A variety of silver(I) neutral complexes differing in stoichiometries and/or crystallographic arrang...
A detailed investigation of the influence of counterions on the [N–I–N]+ halogen bond in solution, i...
A detailed investigation of ligand exchange between iodine(I) ions in [N⋯I⋯N]+ halogen-bonded comple...
A study on the bonding in bis-pyridine halonium cations has been carried out using both theoretical ...
Solutions of iodine and iodine chloride with pyridine, 2,6-dimethylpyridine, and 2,4,6-trimethylpyri...
Solutions of iodine and iodine chloride with pyridine, 2,6-dimethylpyridine, and 2,4,6-trimethylpyri...
The silver(I) and iodine(I) complexes of the 2-substituted pyridines 2-(diphenylmethyl)pyridine (1) ...
[Bis(pyridine)iodine(I)]+ complexes offer controlled access to halonium ions under mild conditions. ...
The directionality of the [N–I–N]+ halogen bond makes iodine(I) ions impeccable tools in the design ...
R factor = 0.031; wR factor = 0.073; data-to-parameter ratio = 23.5. The title compound, [Ag2I2(C5H5...
The directionality of the [N–I–N]+ halogen bond makes iodine(I) ions impeccable tools in the design ...
Building upon the first report of a 3-acetaminopyridine-based iodine(I) complex (1b) and its unexpec...
Z-type ligands remove electron density from the metal center, providing tunable electronic control o...
A combination of experiment and theory has been used to explore the mechanisms by which molecular io...
A variety of silver(I) neutral complexes differing in stoichiometries and/or crystallographic arrang...
A variety of silver(I) neutral complexes differing in stoichiometries and/or crystallographic arrang...
A detailed investigation of the influence of counterions on the [N–I–N]+ halogen bond in solution, i...