Nevado Cristina, Cárdenas Diego J, Echavarren Antonio M
Departamento de Química Orgánica, Universidad Autónoma de Madrid, Cantoblanco, 28049, Madrid, Spain.
Chemistry. 2003 Jun 6;9(11):2627-35. doi: 10.1002/chem.200204646.
The intramolecular reaction of enol ethers with alkynes in methanol is catalyzed by electrophilic Pt(II), Pd(II), and Au(III) chlorides and by a Cu(I) complex to give five- or six-membered rings bearing dimethyl acetals. The reaction takes place by an anti addition of the enol ether and the metal to the alkyne. The possible involvement of vinylidene complexes in this reaction is excluded. In addition to the usual 5-exo-dig (or 6-exo-dig) pathways, a 6-endo-dig pathway has also been found to take place with certain enynes. One case of 5-endo-dig cyclization has also been found. A general scheme for the alkoxycyclization of enynes catalyzed by transition metals based on DFT calculation of PtCl(2) and AuCl(3) complexes that includes exo and endo cyclizations is presented.
在甲醇中,亲电的Pt(II)、Pd(II)和Au(III)氯化物以及一种Cu(I)配合物可催化烯醇醚与炔烃的分子内反应,生成带有二甲基缩醛的五元或六元环。该反应通过烯醇醚和金属对炔烃的反式加成进行。排除了亚乙烯基配合物参与此反应的可能性。除了常见的5-外向-双环化(或6-外向-双环化)途径外,还发现某些烯炔会发生6-内向-双环化途径。也发现了一例5-内向-双环化的情况。基于PtCl(2)和AuCl(3)配合物的密度泛函理论计算,给出了一个包括外向和内向环化的过渡金属催化烯炔烷氧基环化的通用方案。