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Snapshots of magnesium-centred diborane heterolysis by an outer sphere SN2 process

机译:外球SN2过程以镁为中心的乙硼烷杂化的快照

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摘要

Reactions of the β-diketiminato magnesium diboranate derivative, [(BDI)Mg{pinB(n-Bu)Bpin}] (BDI = HC{(Me)CNDipp}2; Dipp = 2,6-i-Pr2C6H3), with N,N′-dialkyl and N,N′-diaryl carbodiimides provided the corresponding C-borylated magnesium borylamidinates. This reactivity occurs with the displacement of n-BuBpin and with the apparent addition of a nucleophilic {Bpin} anion to the electrophilic unsaturated carbodiimide carbon centres. In contrast, while analogous reactions of [(BDI)Mg{pinB(n-Bu)Bpin}] with N-alkyl or N-aryl aldimines and ketimines also resulted in facile displacement of n-BuBpin, they provided the organomagnesium products of {Bpin} addition to the imine nitrogen atom rather than the more electrophilic trigonal imine carbon. Computational assessment by density functional theory (DFT) indicated that, although the energetic differences are marginal, the organomagnesium products may be considered as the kinetic outcome of these reactions with respect to the generation of alternative amidomagnesium regioisomers. This latter deduction was borne out by the thermally-induced conversion of two such organomagnesium species to their C-borylated amidomagnesium isomers, both of which occur with negligible entropies of activation indicative of purely intramolecular processes. Detailed analysis by DFT of the reaction of [(BDI)Mg{pinB(n-Bu)Bpin}] with PhNCHPh indicated that B–N bond formation is initiated by attack of the imine nitrogen at the three-coordinate boron atom of the diboranate anion rather than the more crowded magnesium centre. Consistent with an effectively spontaneous reaction, the resultant cleavage of the B–B bond of the diboranate unit is accomplished via the traversal of two very modest barriers of only 8.3 and 6.7 kcal mol–1. This analysis was also supportive of a subsequent intramolecular B–N to B–C isomerisation process. Of greater general significance, however, the addition of the {Bpin} anion to the reducible aldimine is best rationalised as a consequence of the electrophilic character of this three-coordinate boron centre rather than any intrinsic nucleophilicity associated with the B–B bond of the [pinBB(n-Bu)pin] anion.
机译:β-二酮基氨基甲酸二硼酸镁衍生物[[(BDI)Mg {pinB(n-Bu)Bpin}](BDI = HC {(Me)CNDipp} 2; Dipp = 2,6-i-Pr2C6H3)与N的反应,N'-二烷基和N,N'-二芳基碳二亚胺提供了相应的C-硼化硼烷基yl基镁。这种反应性是随着n-BuBpin的置换以及亲核性{Bpin}阴离子向亲电性不饱和碳二亚胺碳中心的明显添加而发生的。相比之下,虽然[(BDI)Mg {pinB(n-Bu)Bpin}]与N-烷基或N-芳基醛亚胺和酮亚胺的类似反应也导致n-BuBpin的容易置换,但它们提供了{ Bpin}除了亚胺氮原子以外,还具有更亲电子的三角亚胺碳原子。通过密度泛函理论(DFT)进行的计算评估表明,尽管能量差异很小,但相对于生成替代的氨镁区域异构体,有机镁产物可被视为这些反应的动力学结果。后一种推论通过两种有机镁物质热诱导转化为它们的C硼化的铵镁异构体而得到证实,这两种异构体均以可忽略不计的活化熵出现,这表明纯分子内过程。通过DFT对[(BDI)Mg {pinB(n-Bu)Bpin}]与PhN <!-private-char pc1-> CHPh的反应进行的详细分析表明,B–N键的形成是由于对亚氨基氮位于二硼酸根阴离子的三坐标硼原子上,而不是更拥挤的镁中心。与有效的自发反应一致,二硼酸根单元的B–B键的断裂是通过穿越两个非常适度的,仅8.3和6.7 kcal mol -1 的势垒实现的。该分析也支持随后的分子内B–N到B–C异构化过程。然而,具有更大一般意义的是,由于该三坐标硼中心的亲电子特性而不是与之相关的任何内在亲核特性,将{Bpin} 阴离子添加到可还原的醛亚胺中是最合理的。带有[pinBB(n-Bu)pin] 阴离子的BB键。

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