2017
DOI: 10.1021/jacs.7b02775
|View full text |Cite
|
Sign up to set email alerts
|

Cobalt-Catalyzed Allylic C(sp3)–H Carboxylation with CO2

Abstract: Catalytic carboxylation of the allylic C(sp)-H bond of terminal alkenes with CO was developed with the aid of a Co/Xantphos complex. A wide range of allylarenes and 1,4-dienes were successfully transformed into the linear styrylacetic acid and hexa-3,5-dienoic acid derivatives in moderate to high yields, with excellent regioselectivity. The carboxylation showed remarkable functional group tolerability, so that selective addition to CO occurred in the presence of other carbonyl groups such as amide, ester, and … Show more

Help me understand this report

Search citation statements

Order By: Relevance

Paper Sections

Select...
2
2
1

Citation Types

0
58
1
1

Year Published

2017
2017
2022
2022

Publication Types

Select...
5
2

Relationship

1
6

Authors

Journals

citations
Cited by 148 publications
(60 citation statements)
references
References 72 publications
0
58
1
1
Order By: Relevance
“…4). First, methylcobalt(I) I should be generated from Co(acac) 2 , Xantphos, and AlMe 3 [2829]. Oxidative addition of the allylic C(sp 3 )–H bond to I would proceed to afford η 3 -allylcobalt(III) intermediate II , which is tautomerized to η 1 -allylcobalt(III) III by the assistance of the oxygen atom in the Xantphos ligand [30].…”
Section: Resultsmentioning
confidence: 99%
See 1 more Smart Citation
“…4). First, methylcobalt(I) I should be generated from Co(acac) 2 , Xantphos, and AlMe 3 [2829]. Oxidative addition of the allylic C(sp 3 )–H bond to I would proceed to afford η 3 -allylcobalt(III) intermediate II , which is tautomerized to η 1 -allylcobalt(III) III by the assistance of the oxygen atom in the Xantphos ligand [30].…”
Section: Resultsmentioning
confidence: 99%
“…Therefore, it would be a formidable challenge for the generation of a nucleophilic π-allylmetal complex that reacts with electrophiles, triggered by allylic C(sp 3 )–H activation. To this end, Schneider [26], Kanai [27], and we [2829] reported in 2017 catalytic allylic C(sp 3 )–H activation of alkenes to react carbonyl electrophiles such as imines, ketones, and CO 2 via nucleophilic allylmetal species (Fig. 1).…”
Section: Introductionmentioning
confidence: 99%
“…As shown in Scheme 11a, silylation of 2-(o-tolyl) pyridine exhibited a different regioselectivity toward C(sp 2 )-H and C(sp 3 )-H bonds functionalization in the presence of [Ir(cod)Cl] 2 and Ru 3 (CO) 12 Catalysts 2017, 7, 380 8 of 53 catalysts. While the Ir catalyst was found to afford selectively the C(sp 2 )-silylated product (8), the Ru catalyst afforded both C(sp 2 )-and C(sp 3 )-silylated derivative (6).…”
Section: Carboxylation Of Benzylic and Allylic C(sp 3 )-H Bonds Catalmentioning
confidence: 99%
“…Very recently Mita and Sato have reported the catalytic carboxylation of allylic C(sp 3 )-H bond of terminal alkenes with CO 2 in the presence of a Co(acac) 2 /Xantophos/AlMe 3 /CsF system [53] (Scheme 12). Allylarenes (15 examples) were carboxylated to linear trans-styrylacetic acids (9) with moderate to good yields (41-84%) and 100% regioselectivity.…”
Section: Carboxylation Of Benzylic and Allylic C(sp 3 )-H Bonds Catalmentioning
confidence: 99%
See 1 more Smart Citation