Publication | Open Access
Anilinolysis of Diphenyl Thiophosphinic Chloride and Theoretical Studies on Various R<sub>1</sub>R<sub>2</sub>P(O or S)Cl
48
Citations
35
References
2007
Year
EngineeringBiochemistryGas PhaseNatural SciencesChemical BondDiphenyl Thiophosphinic ChlorideOrganic ChemistryReactivity (Chemistry)Theoretical StudiesChemistryMolecular ChemistryHalogenationChemical KineticsKinetic Results
The aminolysis of diphenyl thiophosphinic chloride (2) with substituted anilines in acetonitrile at 55.0 oC is investigated kinetically. Kinetic results yield large Hammett ρX (ρnuc = ?3.97) and Bronsted βX (βnuc = 1.40) values. A concerted mechanism involving a partial frontside nucleophilic attack through a hydrogen-bonded, four-center type transition state is proposed on the basis of the primary normal kinetic isotope effects (kH/kD = 1.0-1.1) with deuterated aniline (XC6H4ND2) nucleophiles. The natural bond order charges on P and the degrees of distortion of 42 compounds: chlorophosphates [(R1O)(R2O)P(=O)Cl], chlorothiophosphates [(R1O)(R2O)P(=S)Cl], phosphonochloridates [(R1O)R2P(=O)Cl], phosphonochlorothioates [(R1O)R2P(=S)Cl], chlorophosphinates [R1R2P(=O)Cl], and chlorothiophosphinates [R1R2P(=S)Cl] are calculated at the B3LYP/ 6-311+G(d,p) level in the gas phase.
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