Yu Shilin, Ward Jas S, Truong Khai-Nghi, Rissanen Kari
Department of Chemistry, University of Jyvaskyla, Survontie 9 B, 40014, Jyväskylä, Finland.
Angew Chem Int Ed Engl. 2021 Sep 13;60(38):20739-20743. doi: 10.1002/anie.202108126. Epub 2021 Aug 24.
Neutral halogen-bonded O-I-N complexes were prepared from in situ formed carbonyl hypoiodites and aromatic organic bases. The carbonyl hypoiodites have a strongly polarized iodine atom with larger σ-holes than any known uncharged halogen bond donor. Modulating the Lewis basicity of the selected pyridine derivatives and carboxylates leads to halogen-bonded complexes where the classical O-I⋅⋅⋅N halogen bond transforms more into a halogen-bonded COO ⋅⋅⋅I-N ion-pair (salt) with an asymmetric O-I-N moiety. X-ray analyses, NMR studies, and calculations reveal the halogen bonding geometries of the carbonyl hypoiodite-based O-I-N complexes, confirming that in the solid-state the iodine atom is much closer to the N-atom of the pyridine derivatives than its original position at the carboxylate O-atom.
中性卤素键合的O-I-N配合物由原位形成的羰基次碘酸盐和芳香有机碱制备而成。羰基次碘酸盐具有一个强极化的碘原子,其σ-空穴比任何已知的不带电卤素键供体都大。调节所选吡啶衍生物和羧酸盐的路易斯碱度会导致卤素键合配合物,其中经典的O-I⋅⋅⋅N卤素键更多地转变为具有不对称O-I-N部分的卤素键合COO ⋅⋅⋅I-N离子对(盐)。X射线分析、核磁共振研究和计算揭示了基于羰基次碘酸盐的O-I-N配合物的卤素键几何结构,证实了在固态中碘原子比其在羧酸盐O原子上的原始位置更靠近吡啶衍生物的N原子。