首页> 外文期刊>Journal of the American Chemical Society >Interligand Interactions Dictate the Regioselectivity of trans-Hydrometalations and Related Reactions Catalyzed by [Cp~*RuCl]. Hydrogen Bonding to a Chloride Ligand as a Steering Principle in Catalysis
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Interligand Interactions Dictate the Regioselectivity of trans-Hydrometalations and Related Reactions Catalyzed by [Cp~*RuCl]. Hydrogen Bonding to a Chloride Ligand as a Steering Principle in Catalysis

机译:配位体相互作用决定了[Cp〜* RuCl]催化的反式水合金属的区域选择性和相关反应。氢键结合氯化物作为催化的指导原则

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摘要

Reactions of internal alkynes with R_3M-H (M = Si, Ge, Sn) follow an unconventional trans-addition mode in the presence of [Cp~*Ru(MeCN)_3]PF_6 (Ⅰ) as the catalyst; however, the regioselectivity is often poor with unsymmetrical substrates. This problem can be solved upon switching to a catalyst comprising a [Ru-Cl] bond, provided that the acetylene derivative carries a protic functional group. The R_3M unit is then delivered with high selectivity to the alkyne-C atom proximal to this steering substituent. This directing effect originates from the ability of the polarized [Ru-Cl] bond to engage in hydrogen bonding with the protic substituent, which helps upload, activate, and lock the alkyne within the coordination sphere. An additional interligand contact of the chloride with the -MR_3 center positions the incoming reagent in a matching orientation that translates into high regioselectivity. The proposed secondary interactions within the loaded catalyst are in line with a host of preparative and spectral data and with the structures of the novel ruthenium π-complexes 10 and 11 in the solid state. Moreover, the first X-ray structure of a [Ru(σ-stannane)] complex (12a) is presented, which indeed features peripheral Ru-Cl---MR_3 contacts; this adduct also corroborates that alkyne trans-addition chemistry likely involves σ-complexes as reactive intermediates. Finally, it is discussed that interligand cooperativity might constitute a more general principle that extends to mechanistically distinct transformations. The presented data therefore make an interesting case for organometallic chemistry that provides inherently better results when applied to substrates containing unprotected rather than protected -OH, -NHR, or -COOH groups.
机译:在[Cp〜* Ru(MeCN)_3] PF_6(Ⅰ)存在下,内部炔烃与R_3M-H(M = Si,Ge,Sn)的反应遵循非常规的加成模式。但是,对于不对称的底物,区域选择性通常很差。只要乙炔衍生物带有质子官能团,就可以改用含[Ru-Cl]键的催化剂来解决。然后将R_3M单元以高选择性递送至该转向取代基附近的炔烃-C原子。这种指导作用源于极化的[Ru-Cl]键与质子取代基进行氢键结合的能力,这有助于炔在配位区内上载,活化和锁定。氯化物与-MR_3中心的额外配位体接触将进入的试剂定位在匹配的方向上,该方向转化为高区域选择性。负载的催化剂中拟议的二次相互作用与大量制备和光谱数据以及固态的新型钌π配合物10和11的结构相符。此外,提出了[Ru(σ-stannane)]配合物(12a)的第一个X射线结构,该结构的确具有外围Ru-Cl --- MR_3接触;该加合物还证实了炔烃的加成化学可能涉及σ-络合物作为反应性中间体。最后,讨论了配位体合作性可能构成更普遍的原理,并延伸到机械上不同的转换。因此,所提供的数据为有机金属化学提供了一个有趣的案例,当将其应用于含有未保护基而不是保护基-OH,-NHR或-COOH的底物时,其固有的更好结果。

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  • 来源
    《Journal of the American Chemical Society》 |2015年第16期|5506-5519|共14页
  • 作者单位

    Max-Planck-Institut fuer Kohlenforschung, D-45470 Muelheim/Ruhr, Germany;

    Max-Planck-Institut fuer Kohlenforschung, D-45470 Muelheim/Ruhr, Germany;

    Max-Planck-Institut fuer Kohlenforschung, D-45470 Muelheim/Ruhr, Germany;

    Max-Planck-Institut fuer Kohlenforschung, D-45470 Muelheim/Ruhr, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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