Pécharman Anne-Frédérique, Hill Michael S, McMullon Grace, McMullin Claire L, Mahon Mary F
Department of Chemistry , University of Bath , Claverton Down , Bath , BA2 7AY , UK . Email:
Chem Sci. 2019 May 24;10(27):6672-6682. doi: 10.1039/c9sc02087j. eCollection 2019 Jul 21.
Reactions of the β-diketiminato magnesium diboranate derivative, [(BDI)Mg{pinB(-Bu)Bpin}] (BDI = HC{(Me)CNDipp}; Dipp = 2,6-i-PrCH), with ,'-dialkyl and ,'-diaryl carbodiimides provided the corresponding C-borylated magnesium borylamidinates. This reactivity occurs with the displacement of -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(-Bu)Bpin}] with -alkyl or -aryl aldimines and ketimines also resulted in facile displacement of -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(-Bu)Bpin}] with PhN[double bond, length as m-dash]CHPh 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 the traversal of two very modest barriers of only 8.3 and 6.7 kcal mol. 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(-Bu)pin] anion.
β-二酮亚胺基硼酸二镁衍生物[(BDI)Mg{pinB(-Bu)Bpin}](BDI = HC{(Me)CNDipp};Dipp = 2,6-i-PrCH)与α,α'-二烷基和α,α'-二芳基碳二亚胺反应,生成了相应的碳硼化镁硼脒盐。这种反应是通过-BuBpin的取代以及亲核性的{Bpin}阴离子明显加成到亲电不饱和碳二亚胺的碳中心而发生的。相比之下,虽然[(BDI)Mg{pinB(-Bu)Bpin}]与α-烷基或α-芳基亚胺和酮亚胺的类似反应也导致了-BuBpin的容易取代,但它们生成的是{Bpin}加成到亚胺氮原子上的有机镁产物,而不是更亲电的三角亚胺碳。密度泛函理论(DFT)的计算评估表明,尽管能量差异很小,但就生成替代的脒基镁区域异构体而言,有机镁产物可被视为这些反应的动力学产物。后一种推断得到了两种这样的有机镁物种热诱导转化为它们的碳硼化脒基镁异构体的证实,这两种转化的活化熵都可以忽略不计,表明是纯粹的分子内过程。DFT对[(BDI)Mg{pinB(-Bu)Bpin}]与PhN[双键,长度为m破折号]CHPh反应的详细分析表明,B-N键的形成是由亚胺氮进攻硼酸二阴离子的三配位硼原子引发的,而不是更拥挤的镁中心。与一个实际上自发的反应一致,硼酸二单元的B-B键的最终断裂是通过仅8.3和6.7 kcal mol的两个非常适度的势垒的跨越来完成的。该分析也支持了随后的分子内B-N到B-C异构化过程。然而,更具普遍意义的是,{Bpin}阴离子加成到可还原的亚胺上,最好解释为这个三配位硼中心的亲电性质的结果,而不是与[pinBB(-Bu)pin]阴离子的B-B键相关的任何内在亲核性。