Theoretical Study of a Derivative of Chlorophosphine with Aliphatic and Aromatic Grignard Reagents: SN2@P or the Novel SN2@Cl Followed by SN2@C?
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This theoretical study reveals that aliphatic Grignard reagents react with a chlorophosphine via SN2@P, while aromatic reagents use a novel SN2@Cl followed by SN2@C pathway.
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Abstract
The proposed S N 2 reactions of a hindered organophosphorus reactant with aliphatic and aromatic nucleophiles [Ye et al. , Org. Lett. 19 , 5384–5387 (2017)] were studied theoretically in order to explain the observed stereochemistry of the products. Our computations indicate that the reaction with the aliphatic nucleophile occurs through a backside S N 2@P pathway while the reaction with the aromatic nucleophile proceeds through a novel S N 2@Cl mechanism, followed by a frontside S N 2@C mechanism. To the best of our knowledge, this is the first time that a S N 2@Cl mechanism is reported. We also found that on reducing the bulkiness of substituents around the phosphorus atom, the backside S N 2@P mechanism is preferred. The conclusions made from investigating the steric effect should help experimentalists to decide for the organophosphorus reactant to achieve the products of desired stereochemistry.
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- europepmc
- last seen: 2026-05-19T01:45:01.086888+00:00
- unpaywall
- last seen: 2026-05-28T02:00:01.590549+00:00
License: CC-BY-NC-ND-4.0