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1.
Org Biomol Chem ; 22(11): 2300-2306, 2024 Mar 13.
Article in English | MEDLINE | ID: mdl-38410027

ABSTRACT

Herein we report the WO2Dipic(H2O) promoted oxyamination of alkenes using sulfonamides as the quantitative source of N. The reaction works for activated and unactivated alkenes in high yields, diastereoselectivities, and stereospecificity. A catalytic cycle involving the formation of tungstenooxaziridine complex 1 as the active catalyst and hydrolysis of tungstenooxazolidine intermediate A as the rate-determining-step has been proposed. Initial kinetic and competition experiments provide evidence for the proposed mechanism.

2.
J Org Chem ; 89(6): 4001-4008, 2024 Mar 15.
Article in English | MEDLINE | ID: mdl-38407036

ABSTRACT

Herein, we report the catalytic allylic amination of α-methylalkenes with V2O3Dipic2(HMPA)2 and chloramine T as the quantitative source of N. The reaction works with high yields and stereoselectivities for α-methylalkenes. A proposed tosylnitrene-free catalytic cycle involving the formation of vanadoxaziridine complex 1 as the active catalyst and aminovanadation across the substrate as the rate-determining step has been proposed. Initial kinetic and competition experiments provide evidence for the proposed mechanism.

3.
Chem Commun (Camb) ; 58(31): 4909-4912, 2022 Apr 14.
Article in English | MEDLINE | ID: mdl-35355045

ABSTRACT

Herein we report the zirconooxaziridine promoted aziridination of alkenes using chloramine T as the quantitative source of N. The reaction works with high yields, diastereoselectivities and stereospecificity for a wide variety of substituted alkenes. A potential mechanism involving the formation of a zirconooxaziridine complex as the active catalyst has been proposed and initial mechanistic data would indicate that a highly associative mechanism is the predominant pathway for this transformation.


Subject(s)
Alkenes , Catalysis , Molecular Structure
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