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首页> 外文期刊>Angewandte Chemie >Efficient Disproportionation of Formic Acid to Methanol Using Molecular Ruthenium Catalysts
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Efficient Disproportionation of Formic Acid to Methanol Using Molecular Ruthenium Catalysts

机译:使用分子钌催化剂将甲酸有效歧化为甲醇

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The disproportionation of formic acid to methanol was unveiled in 2013 using iridium catalysts. Although attractive, this transformation suffers from very low yields; methanol was produced in less than 2% yield, because the competitive dehydrogenation of formic acid (to CO2 and H2) is favored. We report herein the efficient and selective conversion of HCOOH to methanol in 50 % yield, utilizing ruthenium(II) phosphine complexes under mild conditions. Experimental and theoretical (DFT) results show that different convergent pathways are involved in the production of methanol, depending on the nature of the catalyst. Reaction intermediates have been isolated and fully characterized and the reaction chemistry of the resulting ruthenium complexes has been studied.
机译:2013年,使用铱催化剂揭示了甲酸在甲醇中的歧化作用。尽管具有吸引力,但这种转化的收率非常低。甲醇的产率低于2%,因为有利于甲酸的竞争性脱氢(生成CO2和H2)。我们在此报告了在温和条件下利用钌(II)膦配合物将HCOOH有效且选择性地转化为甲醇,产率为50%。实验和理论(DFT)结果表明,取决于催化剂的性质,甲醇的生产涉及不同的收敛途径。已分离出反应中间体并进行了充分表征,并研究了所得钌配合物的反应化学。

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