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Half-sandwich Complexes of Ruthenium; Synthesis and Application to Catalysis

机译:钌的半夹心配合物;催化合成及其应用

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摘要

This thesis describes syntheses and catalytic reactivity of several half-sandwich complexes of ruthenium. The neutral ruthenium trihydride complex, Cp(PPri3)RuH3(1), can efficiently catalyse the H/D exchange reaction between various organic substrates and deuterium sources, such as benzene-d6. Moreover, the H/D exchange reactions of polar substrates were also observed in D2O, which is the most attractive deuterium source due to its low cost and low toxicity. Importantly, the H/D exchange under catalytic conditions was achieved not only in aromatic compounds but also in substituted liphatic compounds. Interestingly, in the case of alkanes and alkyl chains, highly selective deuterium incorporation in the terminal methyl positions was observed. It was discovered that the methylene units are engaged in exchange only if the molecule contains a donating functional group, such as O-and N-donors, C=C double bonds, arenes and CH3.The cationic half-sandwich ruthenium complex [Cp(PPri3)Ru(CH3CN)2]+(2) catalyses the chemoselective mono-addition of HSiMe2Ph to pyridine derivatives to selectively give the 1,4-regiospecific, N-silylated products. An ionic hydrosilylation mechanismis suggested based on the experiments. To support this mechanistic proposal, kinetic studies under catalytic conditions were performed. Also, the 1,4-regioselective mono-hydrosilylation of nitrogen containing compounds such as phenanthroline, quinoline and acridine can be achieved with the related Cp*complex [Cp*(phen)Ru(CH3CN)]+(3) (phen = 1,10-phenanthroline) and HSiMe2Ph under mild conditions. The cationic ruthenium complex 2 can also be used as an efficient catalyst for transfer hydrogenation of various organic substrates including carbonyls, imines, nitriles and esters. Secondary alcohols, amines, N-isopropylidene amines and ethercompounds can be obtained in moderate to high yields. In addition, other ruthenium complexes, 1,3 and [Cp*(PPri3)Ru(CH3CN)2]+(4), can catalyse transfer hydrogenation of carbonyls although the reactions were sluggish compared to the ones of 2. The possible intermediate, Cp(PPri3)Ru(CH3CN)(H), was characterized by NMR at low temperature and the kinetic studies for the transfer hydrogenation of acetophenone were performed. Recently, chemoselective reduction of acid chlorides to aldehydes catalysed by the complex 2 was reported. To extend the catalytic reactivity of 2, reduction of iminoyl chlorides, which can be readily obtained from secondary amides, to the corresponding imines and aldehydes was investigated. Various substituted iminoyl chlorides were converted into the imines and aldehydes under mild conditions and several products were isolated with moderate yields.
机译:本文描述了几种钌的半三明治复合物的合成和催化反应性。中性三氢化钌络合物Cp(PPri3)RuH3(1)可以有效催化各种有机底物与氘源(例如苯-d6)之间的H / D交换反应。此外,在D2O中也观察到极性底物的H / D交换反应,D2O由于其低成本和低毒性而成为最有吸引力的氘源。重要的是,不仅在芳族化合物中而且在取代的脂族化合物中都在催化条件下实现了H / D交换。有趣的是,在烷烃和烷基链的情况下,在末端甲基位置观察到高度选择性的氘掺入。发现只有分子中包含一个供体官能团(例如O和N供体,C = C双键,芳烃和CH3)时,亚甲基单元才能参与交换。阳离子半三明治钌络合物[Cp( PPri3)Ru(CH3CN)2] +(2)催化HSiMe2Ph与吡啶衍生物的化学选择性单加成,从而选择性地生成1,4-区域特异性的N-甲硅烷基化产物。根据实验结果提出了一种离子加氢硅烷化机理。为了支持该机械方案,在催化条件下进行了动力学研究。同样,含氮化合物(菲咯啉,喹啉和a啶)的1,4-区域选择性单氢化硅烷化反应可以通过相关的Cp *络合物[Cp *(phen)Ru(CH3CN)] +(3)(phen = 1 ,10-菲咯啉)和HSiMe2Ph在温和的条件下。阳离子钌配合物2也可用作转移催化氢化各种有机底物(包括羰基,亚胺,腈和酯)的有效催化剂。可以中等至高收率获得仲醇,胺,N-异亚丙基胺和醚化合物。此外,其他钌配合物1,3和[Cp *(PPri3)Ru(CH3CN)2] +(4)可以催化羰基的转移氢化,尽管与2相比反应速度较慢。 Cp(PPri3)Ru(CH3CN)(H)在低温下通过NMR表征,并进行了苯乙酮转移氢化的动力学研究。近来,报道了由配合物2催化的酰氯的化学选择还原为醛。为了扩展2的催化反应性,研究了可以容易地从仲酰胺获得的亚氨酰氯还原为相应的亚胺和醛。在温和的条件下,将各种取代的亚氨基酰氯转化为亚胺和醛,并以中等收率分离出几种产物。

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    Lee Sun Hwa;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 eng
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