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首页> 外文期刊>Physical chemistry chemical physics: PCCP >On the catalytic transfer hydrogenation of nitroarenes by a cubane-type Mo3S4 cluster hydride: disentangling the nature of the reaction mechanism
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On the catalytic transfer hydrogenation of nitroarenes by a cubane-type Mo3S4 cluster hydride: disentangling the nature of the reaction mechanism

机译:在Cumane-型MO3S4浓氢化物中硝基酮的催化转移氢化:解除反应机制的性质

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Cubane-type Mo3S4 cluster hydrides decorated with phosphine ligands are active catalysts for the transfer hydrogenation of nitroarenes to aniline derivatives in the presence of formic acid (HCOOH) and triethylamine (Et3N). The process is highly selective and most of the cluster species involved in the catalytic cycle have been identified through reaction monitoring. Formation of a dihydrogen cluster intermediate has also been postulated based on previous kinetic and theoretical studies. However, the different steps involved in the transfer hydrogenation from the cluster to the nitroarene to finally produce aniline remain unclear. Herein, we report an in-depth computational investigation into this mechanism. Et3N reduces the activation barrier associated with the formation of Mo-HMIDLINE HORIZONTAL ELLIPSISHOOCH dihydrogen species. The global catalytic process is highly exergonic and occurs in three consecutive steps with nitrosobenzene and N-phenylhydroxylamine as reaction intermediates. Our computational findings explain how hydrogen is transferred from these Mo-HMIDLINE HORIZONTAL ELLIPSISHOOCH dihydrogen adducts to nitrobenzene with the concomitant formation of nitrosobenzene and the formate substituted cluster. Then, a beta-hydride elimination reaction accompanied by CO2 release regenerates the cluster hydride. Two additional steps are needed for hydrogen transfer from the dihydrogen cluster to nitrosobenzene and N-phenylhydroxylamine to finally produce aniline. Our results show that the three metal centres in the Mo3S4 unit act independently, so the cluster can exist in up to ten different forms that are capable of opening a wide range of reaction paths. This behaviour reveals the outstanding catalytic possibilities of this kind of cluster complexes, which work as highly efficient catalytic machines.
机译:用膦配体装饰的Cubane型MO3S4簇是活性催化剂,用于在甲酸(HCOOH)和三乙胺(ET 3N)存在下对苯胺衍生物的氢化衍生物的活性催化剂。该方法具有高度选择性,并且通过反应监测鉴定了催化循环中涉及的大多数群体。基于先前的动力学和理论研究,也已经假设了二氢簇中间体的形成。然而,从簇中转移到硝基烯中的转移氢化涉及的不同步骤,以最终产生苯胺仍然不清楚。在此,我们向这种机制报告了深入的计算调查。 Et 3N减少了与Mo-Hmidline水平椭圆形柴油橡胶物质形成相关的活化屏障。全局催化过程高度出汗,并用亚硝苯苯苯和N-苯基胺作为反应中间体的三个连续步骤发生。我们的计算结果解释了氢气如何从这些Mo-Hmidline水平椭圆型胶水橡胶二氢加入硝基苯,随着亚硝基苯和甲酸甲酸替取簇的形成。然后,伴随CO 2释放的β-氢化物消除反应再生浓氢化物。从二氢簇中的氢转移到亚硝基苯和正苯基羟胺中,需要另外两步,以最终产生苯胺。我们的结果表明,MO3S4单元中的三个金属中心独立起作用,因此群体可以存在于最多十种不同的形式,能够打开各种反应路径。这种行为揭示了这种簇复合物的出色催化可能性,其适用于高效的催化机。

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    Univ Jaume 1 Dept Quim Fis &

    Analit Av Sos Baynat S-N Castellon de La Plana 12071 Spain;

    Univ Jaume 1 Dept Quim Fis &

    Analit Av Sos Baynat S-N Castellon de La Plana 12071 Spain;

    Univ Jaume 1 Dept Quim Fis &

    Analit Av Sos Baynat S-N Castellon de La Plana 12071 Spain;

    Univ Jaume 1 Dept Quim Fis &

    Analit Av Sos Baynat S-N Castellon de La Plana 12071 Spain;

    Univ Jaume 1 Dept Quim Fis &

    Analit Av Sos Baynat S-N Castellon de La Plana 12071 Spain;

    Univ Jaume 1 Dept Quim Fis &

    Analit Av Sos Baynat S-N Castellon de La Plana 12071 Spain;

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  • 正文语种 eng
  • 中图分类 物理学;化学;
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