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首页> 外文期刊>Angewandte Chemie >Highly Active Superbulky Alkaline Earth Metal Amide Catalysts for Hydrogenation of Challenging Alkenes and Aromatic Rings
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Highly Active Superbulky Alkaline Earth Metal Amide Catalysts for Hydrogenation of Challenging Alkenes and Aromatic Rings

机译:高活跃的超伯克基碱土金属酰胺催化剂,用于锐利的烯烃和芳香环

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摘要

Two series of bulky alkaline earth (Ae) metal amide complexes have been prepared: Ae[N(TRIP)(2)](2) (1-Ae) and Ae[N(TRIP)(DIPP)](2) (2-Ae) (Ae=Mg, Ca, Sr, Ba; TRIP=SiiPr(3), DIPP=2,6-diisopropylphenyl). While monomeric 1-Ca was already known, the new complexes have been structurally characterized. Monomers 1-Ae are highly linear while the monomers 2-Ae are slightly bent. The bulkier amide complexes 1-Ae are by far the most active catalysts in alkene hydrogenation with activities increasing from Mg to Ba. Catalyst 1-Ba can reduce internal alkenes like cyclohexene or 3-hexene and highly challenging substrates like 1-Me-cyclohexene or tetraphenylethylene. It is also active in arene hydrogenation reducing anthracene and naphthalene (even when substituted with an alkyl) as well as biphenyl. Benzene could be reduced to cyclohexane but full conversion was not reached. The first step in catalytic hydrogenation is formation of an (amide)AeH species, which can form larger aggregates. Increasing the bulk of the amide ligand decreases aggregate size but it is unclear what the true catalyst(s) is (are). DFT calculations suggest that amide bulk also has a noticeable influence on the thermodynamics for formation of the (amide)AeH species. Complex 1-Ba is currently the most powerful Ae metal hydrogenation catalyst. Due to tremendously increased activities in comparison to those of previously reported catalysts, the substrate scope in hydrogenation catalysis could be extended to challenging multi-substituted unactivated alkenes and even to arenes among which benzene.
机译:已经制备了两系列庞大的碱土(AE)金属酰胺络合物:Ae [n(跳闸)(2)](2)(2)(1-AE)和Ae [n(跳闸)(dipp)](2)(2)(2 -AE)(AE = Mg,Ca,Sr,Ba;跳闸= SiIPR(3),dipp = 2,6-二异丙基苯基)。虽然已知单体1-Ca,但新复合物已经在结构上表征。单体1-AE是高度线性的,而单体2-AE略微弯曲。 Bullkier酰胺配合物1-AE在迄今为止烯烃氢化中最活跃的催化剂,其活性从Mg增加到Ba。催化剂1-Ba可以减少如环己烯或3-己烯的内烯烃,并且具有高度挑战性的基材,如1-ME-环己烯或四苯基乙烯。它还活性在芳烃氢化还原蒽和萘中(即使当被烷基取代时)以及联苯。苯可以减少到环己烷中,但没有达到全转化。催化氢化的第一步是形成(酰胺)aeh物种,其可以形成较大的聚集体。增加酰胺配体的大部分降低骨料大小,但尚不清楚真催化剂是什么(是)。 DFT计算表明,酰胺体积对形成(酰胺)AEH物种形成的热力学产生显着影响。复合1-BA是目前最强大的AE金属氢化催化剂。由于与先前报道的催化剂相比具有巨大增加的活性,氢化催化剂中的基质范围可以延伸至挑战多替代的未激活的烯烃,甚至是苯中的植物。

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