| Literature DB >> 34290838 |
Feng Xiong1, Bo Li2, Chenrui Yang1, Liang Zou1, Wenbo Ma2, Linghui Gu2, Ruhuai Mei1,2, Lutz Ackermann3.
Abstract
The efficient copper-mediated oxidative C-H alkynylation of benzhydrazides was accomplished with terminal alkynes. Thus, a heteroaromatic removable N-2-pyridylhydrazide allowed for domino C-H/N-H functionalization. The approach featured remarkable functional group compatibility and ample substrate scope. Thereby, highly functionalized aromatic and heteroaromatic isoindolin-1-ones were accessed with high efficacy with rate-limiting C-H cleavage.Entities:
Keywords: 3-methyleneisoindolin-1-one; benzhydrazides; copper; removable directing group
Year: 2021 PMID: 34290838 PMCID: PMC8275871 DOI: 10.3762/bjoc.17.113
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Assembly of 3-methyleneisoindolin-1-one via 3d transition metal-mediated/catalyzed oxidative C−H/N−H activation.
Optimization of the copper-mediated C−H/N−H functionalization with terminal alkyne 2a.a
| entry | solvent | base | yield (%) | ||
| 1 | DMF | Na2CO3 | 90 | — | trace |
| 2 | NMP | Na2CO3 | 90 | — | trace |
| 3 | DMSO | Na2CO3 | 90 | 12:1 | 67 |
| 4 | DMSO | Na2CO3 | 110 | 8:1 | 57 |
| 5 | DMSO | Na2CO3 | 80 | 15:1 | 41 |
| 6 | DMSO | Na2CO3 | 60 | — | 27 |
| 7 | DMSO | NaOAc | 90 | — | 25 |
| 8 | DMSO | NaOPiv | 90 | — | 30 |
| 9 | DMSO | K2CO3 | 90 | 18:1 | 58 |
| 10 | DMSO | Cs2CO3 | 90 | 20:1 | 44 |
| 11 | DMSO | DBU | 90 | — | 13 |
| 12b | DMSO | Na2CO3 | 90 | 12:1 | 42 |
| 13c | DMSO | Na2CO3 | 90 | 9:1 | 83 |
| 14c,d | DMSO | Na2CO3 | 90 | 13:1 | 89 |
| 15d,e | DMSO | Na2CO3 | 90 | 12:1 | 86 |
| 16 | DMSO | — | 90 | — | trace |
| 17f | DMSO | Na2CO3 | 90 | — | trace |
| 18g | DMSO | Na2CO3 | 90 | — | 37 |
aReaction conditions: 1a (0.30 mmol), 2a (0.90 mmol), Cu(OAc)2 (1.1 equiv), base (2.0 equiv), solvent (3.0 mL), 15 h, under air. bCu(OAc)2 (0.8 equiv). cCu(OAc)2 (1.3 equiv). dDMSO (6.0 mL). eCu(OAc)2⋅H2O (1.3 equiv). fWithout Cu(OAc)2. gUnder N2.
Scheme 1Copper-mediated oxidative C−H/N−H functionalization of hydrazides 1 with ethynylbenzene (2a).
Scheme 2Copper-mediated oxidative C−H/N−H functionalization of 1 with alkynes 2.
Scheme 3Decaboxylative C−H/N−H activation and cleavage of the directing group.
Scheme 4Summary of key mechanistic findings.
Scheme 5Proposed reaction pathway.