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首页> 外文期刊>Inorganica Chimica Acta >Selective reduction of alkynes to alkenes with hydrogen or formic acid catalyzed by cis,mer-[IrH2Cl(mtppms)(3)](?)
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Selective reduction of alkynes to alkenes with hydrogen or formic acid catalyzed by cis,mer-[IrH2Cl(mtppms)(3)](?)

机译:用CIS催化的氢或甲酸选择性还原炔烃,MER-[IRH2CL(MTPPMS)(3)](?)

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摘要

In this work we have found, that the water-soluble cis,mer-[IrH2Cl(mtppms)3] (mtppms = monosulfonated triphenylphosphine Na-salt) was an excellent catalyst for reduction of terminal alkynes by hydrogen transfer from aqueous HCOOH/HCOONa mixtures. The conversions strongly depended on the pH of the reaction mixtures, and the highest rate of phenylacetylene transfer hydrogenation was observed at pH 3. The same dihydrido-Ir(III) complex actively catalyzed also the hydrogenation of terminal alkynes under mild conditions (T = 50 ?C; P (H2) = 2?10 bar). Importantly, both the hydrogenation and hydrogen transfer reductions afforded exclusively the corresponding alkenes as products. Phenylacetylene and its substituted derivatives reacted smoothly, while benzylic and aliphatic alkynes were less reactive or did not react at all. It was also found, that an excess of the mtppms ligand inhibited the reaction. This was rationalized by formation of cisz-[IrH2(mtppms)4]+ which was also confirmed with multinuclear NMR spectroscopy. On the basis of the experimental results, a joint mechanism was suggested for both the hydrogenation and transfer hydrogenation pathways. The mechanism of hydrogenation and transfer hydrogenation of phenylacetylene was also studied by DFT calculations, which revealed several possibilities for protonation of a vinyl intermediate as the crucial step in formation of the styrene product.
机译:在这项工作中,我们发现水溶性顺式,mer-[IrH2Cl(mtppms)3](mtppms=单磺化三苯基膦钠盐)是通过氢转移从水性HCOOH/HCOONa混合物中还原末端炔烃的优良催化剂。转化率强烈依赖于反应混合物的pH值,并且在pH值为3时观察到最高的苯乙炔转移加氢速率。同样的二氢铱(III)络合物也在温和条件下(T=50℃;P(H2)=2?)积极催化末端炔烃的加氢?10巴)。重要的是,氢化和氢转移还原只提供相应的烯烃作为产物。苯乙炔及其取代衍生物反应平稳,而苄基和脂肪族炔烃反应较弱或根本不反应。还发现过量的mtppms配体抑制了反应。这是合理的形成cisz-[IrH2(mtppms)4]+这也证实了多核核磁共振波谱。根据实验结果,提出了加氢和转移加氢的联合机理。通过DFT计算还研究了苯乙炔的加氢和转移加氢机理,揭示了乙烯基中间体质子化作为苯乙烯产品形成的关键步骤的几种可能性。

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