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s-Block cooperative catalysis: alkali metal magnesiate-catalysed cyclisation of alkynols

机译:s-Block协同催化:镁碱金属镁催化的炔醇环化

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Mixed s-block metal organometallic reagents have been successfully utilised in the catalytic intramolecular hydroalkoxylation of alkynols. This success has been attributed to the unique manner in which these reagents can overcome the challenges of the reaction: namely OH activation and coordination to and then addition across a CC bond. In order to optimise the reaction conditions and to garner vital catalytic system requirements, a series of alkali metal magnesiates were enlisted for the catalytic intramolecular hydroalkoxylation of 4-pentynol. In a prelude to the main investigation, the homometallic magnesium dialkyl reagent MgR _(2) (where R = CH _(2) SiMe _(3) ) was utilised. This reagent was unsuccessful in cyclising the alcohol into 2-methylenetetrahydrofuran 2a or 5-methyl-2,3-dihydrofuran 2b , even in the presence of multidentate Lewis donor molecules such as N , N , N ′, N ′′, N ′′-pentamethyldiethylenetriamine (PMDETA). Alkali metal magnesiates M ~(I) MgR _(3) (when M ~(I) = Li, Na or K) performed the cyclisation unsatisfactorily both in the absence/presence of N , N , N ′, N ′-tetramethylethylenediamine (TMEDA) or PMDETA. When higher-order magnesiates ( i.e. , M ~(I) _(2) MgR _(4) ) were employed, in general a marked increase in yield was observed for M ~(I) = Na or K; however, the reactions were still sluggish with long reaction times (22–36 h). A major improvement in the catalytic activity of the magnesiates was observed when the crown ether molecule 15-crown-5 was combined with sodium magnesiate Na _(2) MgR _(4) (TMEDA) _(2) furnishing yields of 87% with 2a ?:? 2b ratios of 95?:?5 after 5 h. Similar high yields of 88% with 2a ?:? 2b ratios of 90?:?10 after 3 h were obtained combining 18-crown-6 with potassium magnesiate K _(2) MgR _(4) (PMDETA) _(2) . Having optimised these systems, substrate scope was examined to probe the range and robustness of 18-crown-6/K _(2) MgR _(4) (PMDETA) _(2) as a catalyst. A wide series of alkynols, including terminal and internal alkynes which contain a variety of potentially reactive functional groups, were cyclised. In comparison to previously reported monometallic systems, bimetallic 18-crown-6/K _(2) MgR _(4) (PMDETA) _(2) displays enhanced reactivity towards internal alkynol-cyclisation. Kinetic studies revealed an inhibition effect of substrate on the catalysts via adduct formation and requiring dissociation prior to the rate limiting cyclisation step.
机译:混合的S嵌段金属有机金属试剂已成功用于炔醇的分子内加氢烷氧基化催化反应。这种成功归因于这些试剂可以克服反应挑战的独特方式:OH活化和配位,然后通过CC键加成。为了优化反应条件并满足重要的催化体系要求,选择了一系列碱金属氧化镁进行4-戊炔醇的分子内加氢烷氧基化反应。在进行主要研究的前奏中,使用了均金属二烷基镁镁试剂MgR_(2)(其中R = CH_(2)SiMe_(3))。即使在存在多齿路易斯供体分子(例如N,N,N',N'',N'')的情况下,该试剂也无法将醇环化为2-亚甲基四氢呋喃2a或5-甲基-2,3-二氢呋喃2b。 -五甲基二亚乙基三胺(PMDETA)。碱金属镁盐M〜(I)MgR _(3)(当M〜(I)= Li,Na或K时)在不存在/存在N,N,N',N'-四甲基乙二胺的情况下均不能令人满意地进行环化反应( TMEDA)或PMDETA。当使用更高阶的镁酸盐(即,M〜(I)_(2)MgR _(4))时,通常观察到M〜(I)= Na或K的产率显着增加;但是,反应时间长(22-36小时),反应仍然缓慢。当冠醚分子15-crown-5与镁酸钠结合后,镁氧化物的催化活性得到了显着改善Na _(2)MgR _(4)(TMEDA)_(2)的收率为87%。 2a?:? 5小时后2b的比率为95?:?5。与2a?:?相似的88%高产率3小时后,将18-crown-6与氧化镁钾K_(2)MgR_(4)(PMDETA)_(2)结合,得到2b的比率为90?:?10。优化了这些系统后,检查了基板范围,以探测18冠-6 / K _(2)MgR _(4)(PMDETA)_(2)作为催化剂的范围和坚固性。一系列炔烃,包括含有各种潜在反应性官能团的末端炔烃和内部炔烃,都被环化了。与以前报道的单金属系统相比,双金属18冠6 / K _(2)MgR _(4)(PMDETA)_(2)显示出对内部炔醇环化的增强的反应性。动力学研究揭示了底物通过加合物形成对催化剂的抑制作用,并且需要在限速环化步骤之前解离。

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