Abstract:A principal goal of organometallic chemistry is the catalytic synthesis of organic compounds by using the chemistry of organic ligands covalently bound to transition metals. Most organometallic chemistry has focused on complexes with covalent metal-carbon or metal-hydrogen bonds. Transition metals have been workhorse elements in many commercialized catalytic processes that include hydrogenations, hydroformylations, acetic acid production, and other C-C and C-H bond forming processes. [1][2][3][4][5] Although c… Show more
“…Compounds 3a , 4a , 3b , 4b , 3c , 4c , 3 d , 3e , 3f , 3 g , 4 g , 3 h , 3i , 11 , 12 , 13 , and 14 were synthesized according to the general procedure (for reaction time see Tables and ).…”
Aromatic amines is not used commonly in allylic amination, presumably because of their less nucleophilic nature compared with the more extensively used benzylamine or relatively stable anionic nitrogen nucleophiles. An eco-friendly method for C-O bond activation of allylic acetates using palladium associated with ligands in water leading to N-allylation was described in this study. The palladium-catalyzed allylic amination of allylic acetate with aminonaphthalenes gave 34-95% yields to the corresponding N-allylic aminonaphthalenes.
“…Compounds 3a , 4a , 3b , 4b , 3c , 4c , 3 d , 3e , 3f , 3 g , 4 g , 3 h , 3i , 11 , 12 , 13 , and 14 were synthesized according to the general procedure (for reaction time see Tables and ).…”
Aromatic amines is not used commonly in allylic amination, presumably because of their less nucleophilic nature compared with the more extensively used benzylamine or relatively stable anionic nitrogen nucleophiles. An eco-friendly method for C-O bond activation of allylic acetates using palladium associated with ligands in water leading to N-allylation was described in this study. The palladium-catalyzed allylic amination of allylic acetate with aminonaphthalenes gave 34-95% yields to the corresponding N-allylic aminonaphthalenes.
“…Yang et al have intensively developed the use of titanium(IV) isopropoxide and molecular sieves as additives for the allylation of primary and secondary arylamines with various allylic alcohols [43,[48][49][50][51][52][53][54][55] [Equation (20)]. [55] No reaction was observed without the titanium alkoxide [Equation (21)], [43] and the yields decreased greatly in the absence of the molecular sieves.…”
Section: -Catalyzed Allylations In the Presence Of Promotersmentioning
confidence: 99%
“…[55] No reaction was observed without the titanium alkoxide [Equation (21)], [43] and the yields decreased greatly in the absence of the molecular sieves. [48,51] The best catalytic system would be highly dependent on the structure of the amine; for an example, the reaction between 1 and aniline in benzene gave much better results with Pd(OAc) 2 /PPh 3 than with PdCl 2 /PPh 3 [Equation (22)], [48] while the yields were similar with 1-aminonaphthalene [Equation (23)].…”
Section: -Catalyzed Allylations In the Presence Of Promotersmentioning
confidence: 99%
“…[51,53,55] The PdL n /Ti(OR) 4 /MS procedure has been applied to the synthesis of heterocycles from (Z)-but-2-ene-1,4-diol and 2-aminophenols [Equation (25)], [50,54] o-phenylenediamines [Equation (26)], [52] or 2,3-diaminonaphthalene. [53,56] Other Ti(OR) 4 variants can be used, [52][53][54] while use of TiCl 4 resulted either in no reaction [52] or in low yields.…”
Section: -Catalyzed Allylations In the Presence Of Promotersmentioning
confidence: 99%
“…Pd-catalyzed trans to cis isomerization of the η 3 -allylpalladium intermediate is also a possibility. [61] Yang's team, who had previously used the PdL n /Ti-(OR) 4 /MS procedure in benzene for allylation of anilines, [40,[48][49][50][51]55] has recently reported the use of a carboxylic acid as the additive at reflux in water [Equations (31)- (33)]. [62] A screening of carboxylic acids and palladium/ligand combinations resulted in the retention of adamantane-1-carboxylic acid (AdCO 2 H) and Pd(acac) 2 /PPh 3 for the performance of various allylic aminations.…”
Section: -Catalyzed Allylations In the Presence Of Promotersmentioning
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