2 research outputs found
Zirconium(IV) Compounds As Efficient Catalysts for Synthesis of α-Aminophosphonates
Zirconium(IV) compounds are reported as excellent catalysts for a three-component one-pot reaction of an amine, an aldehyde or a ketone, and a di/trialkyl/aryl phosphite to form α-aminophosphonates under solvent-free conditions at rt. Among the various zirconium compounds, ZrOCl2·8H2O and ZrO(ClO4)2·6H2O were most effective. The reactions were faster with dialkyl/diaryl phosphites than with trialkyl/triaryl phosphites. No O−Me cleavage occurs with aryl methyl ether and methyl ester groups. α,β-Unsaturated carbonyl moiety does not undergo conjugate addition with the phorphorous moiety
An Extremely Efficient Three-Component Reaction of Aldehydes/Ketones, Amines, and Phosphites (Kabachnik−Fields Reaction) for the Synthesis of α-Aminophosphonates Catalyzed by Magnesium Perchlorate
Commercially available magnesium perchlorate is reported as an extremely efficient catalyst for the
synthesis of α-aminophosphonates. A three-component reaction (3-CR) of an amine, an aldehyde or a
ketone, and a di-/trialkyl phosphite (Kabachnik−Fields reaction) took place in one pot under solvent-free conditions to afford the corresponding α-aminophosphonates in high yields and short times. The use
of solvent retards the rate of the reaction and requires a much longer reaction time than that for neat
conditions. The reactions involving an aldehyde, an aromatic amine without any electron-withdrawing
substituent, and a phosphite are carried out at rt. The reactions involving cyclic ketones, aromatic amines
with an electron-withdrawing substituent, and aryl alkyl ketone (e.g., acetophenone) require longer reaction
times at rt or heating. Magnesium perchlorate was found to be superior to other metal perchlorates and
metal triflates during the reaction of 4-methoxybenzaldehyde, 2,4-dinitroaniline, and dimethyl phosphite.
The catalytic activity of various magnesium compounds was influenced by the counteranion, and
magnesium perchlorate was found to be the most effective. The reaction was found to be general with
di-/trialkyl phosphites and diaryl phosphite. The Mg(ClO4)2-catalyzed α-aminophosphonate synthesis in
the present study perhaps represents a true three-component reaction as no intermediate formation of
either an imine or α-hydroxy phosphonate was observed that indicated the simultaneous involvement of
the carbonyl compound, the amine, and the phosphite in the transition state
