2023
DOI: 10.1021/acs.organomet.2c00565
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Are Ar3SbCl2 Species Lewis Acidic? Exploration of the Concept and Pnictogen Bond Catalysis Using a Geometrically Constrained Example

Abstract: As part of our investigations into the Lewis acidic behavior of antimony derivatives, we have decided to study the properties of 5-phenyl-5,5dichloro-λ 5 -dibenzostibole (1), a dichlorostiborane with an antimony atom confined to a five-membered heterocycle. Our work shows that the resulting geometrical constraints elevate the Lewis acidity of the antimony atom, as confirmed by the crystal structure of 1-THF and the solution study of the interaction of 1 with Ph 3 PO. The enhanced Lewis acidic properties of 1, … Show more

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Cited by 8 publications
(4 citation statements)
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“…In addition to demonstrating the importance of catecholate perchlorination, compound 27 may also benefit from its bicyclic structure. The integration of two antimony-fused five membered rings most likely accentuates the geometrical constraints imposed on the ground state structure, boosting its Lewis acidity …”
Section: Anion Complexation Chemistrymentioning
confidence: 99%
See 1 more Smart Citation
“…In addition to demonstrating the importance of catecholate perchlorination, compound 27 may also benefit from its bicyclic structure. The integration of two antimony-fused five membered rings most likely accentuates the geometrical constraints imposed on the ground state structure, boosting its Lewis acidity …”
Section: Anion Complexation Chemistrymentioning
confidence: 99%
“…The integration of two antimony-fused five membered rings most likely accentuates the geometrical constraints imposed on the ground state structure, boosting its Lewis acidity. 54 …”
Section: Anion Complexation Chemistrymentioning
confidence: 99%
“…This focus started predominantly with halogen bonds and progressively worked its way to the left of the periodic table, extending to chalcogen bonds, pnictogen bonds, and even tetrel bonds . With their use of empty σ*-orbitals, these compounds have challenged the notion that the interactions they form are purely “non-covalent.” While the Gabbaı̈ lab has a strong tradition with pnictogen-based Lewis acids, welike othershave become enamored with the neighboring chalcogens. …”
Section: Introductionmentioning
confidence: 99%
“…Anion binding and recognition, an important subfield of host–guest interactions, is used to direct crystal engineering and molecular templating, , for selective sensing of anions , and for metal-free catalysis in organic synthesis. , Pnictogens have played an important role in anion binding in the +5 oxidation state. This is largely due to the high Lewis acidity of the electron-deficient central pnictogen. Pnictogens in the +3 oxidation state are typically viewed as Lewis bases due to the presence of a lone pair. The heaviest pnictogens are amphoteric in the +3 oxidation state, and by carefully choosing the chemical environment of the pnictogen, the scales can be tipped toward Lewis acidity allowing for anion binding mediated by pnictogens in the +3 oxidation state. Figure depicts some of the examples where trivalent pnictogens have been purposefully used for anion binding.…”
Section: Introductionmentioning
confidence: 99%