| Literature DB >> 35541116 |
Zhi-Xin Zhang1, Bo-Han Zhu1, Pei-Xi Xie1, Jia-Qi Tang1, Xin-Ling Li1, Chunyin Zhu2, Ying-Wu Yin1, Long-Wu Ye1,3.
Abstract
A novel and efficient scandium-catalyzed oxidative reaction between ynamides and alcohols for the facile synthesis of various α-alkoxyl amides is reported in this paper. The reaction avoids the need for the use of α-diazo carbonyls which are unstable and may cause some safety concerns. Instead, by using alkynes as the starting materials, this protocol features readily available substrates, compatibility with a broad range of functional groups, simple procedure, mild reaction conditions, and high chemoselectivity. This journal is © The Royal Society of Chemistry.Entities:
Year: 2018 PMID: 35541116 PMCID: PMC9080523 DOI: 10.1039/c8ra03842b
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Fig. 1Selected examples of bioactive α-alkoxyl carbonyls.
Scheme 1Two synthetic pathways to α-alkoxyl carbonyls: the reaction of alcohols with α-diazo carbonyls and ynamides.
Optimization of reaction conditionsa
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| Entry | Catalyst | Oxident (R) | Yield | ||
| 4a | 4aa | 4ab | |||
| 1 | PPh3AuNTf2 | 3a (2,6-Br2) | <1 | 90 | <1 |
| 2 | IPrAuNTf2 | 3a (2,6-Br2) | 17 | 72 | <1 |
| 3 | Zn(OTf)2 | 3a (2,6-Br2) | 75 | <1 | 12 |
| 4 | Fe(OTf)3 | 3a (2,6-Br2) | 65 | <1 | 32 |
| 5 | Yb(OTf)3 | 3a (2,6-Br2) | 69 | <1 | 12 |
| 6 | In(OTf)3 | 3a (2,6-Br2) | 64 | <1 | 18 |
| 7 | Sm(OTf)3 | 3a (2,6-Br2) | 74 | <1 | <1 |
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| 9 | HNTf2 | 3a (2,6-Br2) | 39 | <1 | 23 |
| 10 | MsOH | 3a (2,6-Br2) | <1 | <1 | 70 |
| 11 | Sc(OTf)3 | 3b (2,6-Cl2) | 88 | <1 | 6 |
| 12 | Sc(OTf)3 | 3c (2-Br) | 80 | <1 | 11 |
Reactions run in vials; [1a] = 0.05 M.
Estimated by 1H NMR using diethyl phthalate as an internal reference.
Reaction scope studya
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Reactions run in vials; [1] = 0.05 M; isolated yields are reported.
3 equiv. of 3a was employed.
Scheme 2Transformation of selected α-alkoxyl amides.
Scheme 3Mechanistic rationale for the synthesis of α-alkoxyl amide 4a.