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Intramolecular C-C coupling reactions of alkynyl, vinylidene, and alkenylphosphane ligands in rhodium(III) complexes

机译:铑(III)配合物中炔基,亚乙烯基和烯基膦配体的分子内C-C偶联反应

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摘要

Electrophilic attack with methyl trifluoromethanesulfonate or tetrafluoroboric acid, to new alkynyl rhodium complexes containing alkenylphosphanes, leads to butenynyl coupling products or to the unprecedented rhodaphosphacycle complexes [Rh(η5-C5Me5){k4-(P,C,C,C)-iPr2PCH2C(═CH2)C(CH2R)C═C(R)}][BF4] (R = Ph (11a), p-tol (11b)). These complexes 11a,b can be explained as a result of the coupling of three organic fragments in the molecule, the alkynyl, the vinylidene, generated in situ by reaction with HBF4 (A), and the C-C double bond from the alkenylphosphane. DFT computational studies on the formation of complex 11a suggest the [2 + 2] intramolecular cycloaddition between the double bond of the allylphosphane and the Cα–Cβ of the vinylidene A as the most plausible pathway for this reaction.
机译:用三氟甲磺酸甲酯或四氟硼酸亲电攻击含有烯基膦的新型炔基铑配合物,会导致丁炔基偶合产物或空前的Rhodaphosphacycle配合物[Rh(η5-C5Me5){k4-(P,C,C,C)-iPr2PCH2C( [CH2)C(CH2R)C═C(R)}] [BF4](R = Ph(11a),p-tol(11b))。这些配合物11a,b可以解释为分子中三个有机片段的偶联结果,炔基,亚乙烯基通过与HBF4(A)反应原位生成,以及烯基膦的C-C双键。 DFT对复合物11a形成的计算研究表明,烯丙基膦的双键与亚乙烯基A的Cα-Cβ之间的[2 + 2]分子内环加成反应是该反应最合理的途径。

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