Ginovska Bojana, Autrey Tom, Parab Kshitij, Bowden Mark E, Potter Robert G, Camaioni Donald M
Physical Sciences Division, Pacific Northwest National Laboratory, P.O. Box 999, Richland, WA 99354 (USA).
Current affiliation: Sirrus Chemistry, Loveland, OH (USA).
Chemistry. 2015 Oct 26;21(44):15713-9. doi: 10.1002/chem.201501899. Epub 2015 Sep 10.
We report that 2,6-lutidine⋅trichloroborane (Lut⋅BCl3 ) reacts with H2 in toluene, bromobenzene, dichloromethane, and Lut solvents producing the neutral hydride, Lut⋅BHCl2 . The mechanism was modeled with density functional theory, and energies of stationary states were calculated at the G3(MP2)B3 level of theory. Lut⋅BCl3 was calculated to react with H2 and form the ion pair, [LutH(+) ][HBCl3 (-) ], with a barrier of ΔH(≠) =24.7 kcal mol(-1) (ΔG(≠) =29.8 kcal mol(-1) ). Metathesis with a second molecule of Lut⋅BCl3 produced Lut⋅BHCl2 and [LutH(+) ][BCl4 (-) ]. The overall reaction is exothermic by 6.0 kcal mol(-1) (Δr G°=-1.1). Alternate pathways were explored involving the borenium cation (LutBCl2 (+) ) and the four-membered boracycle [(CH2 {NC5 H3 Me})BCl2 ]. Barriers for addition of H2 across the Lut/LutBCl2 (+) pair and the boracycle BC bond are substantially higher (ΔG(≠) =42.1 and 49.4 kcal mol(-1) , respectively), such that these pathways are excluded. The barrier for addition of H2 to the boracycle BN bond is comparable (ΔH(≠) =28.5 and ΔG(≠) =32 kcal mol(-1) ). Conversion of the intermediate 2-(BHCl2 CH2 )-6-Me(C5 H3 NH) to Lut⋅BHCl2 may occur by intermolecular steps involving proton/hydride transfers to Lut/BCl3 . Intramolecular protodeboronation, which could form Lut⋅BHCl2 directly, is prohibited by a high barrier (ΔH(≠) =52, ΔG(≠) =51 kcal mol(-1) ).
我们报道了2,6 - 二甲基吡啶·三氯硼烷(Lut·BCl₃)在甲苯、溴苯、二氯甲烷和2,6 - 二甲基吡啶溶剂中与H₂反应生成中性氢化物Lut·BHCl₂。用密度泛函理论对反应机理进行了模拟,并在G3(MP2)B3理论水平上计算了稳态能量。计算表明,Lut·BCl₃与H₂反应形成离子对[LutH⁺][HBCl₃⁻],其反应能垒为ΔH(≠)=24.7 kcal·mol⁻¹(ΔG(≠)=29.8 kcal·mol⁻¹)。与第二个Lut·BCl₃分子发生复分解反应生成Lut·BHCl₂和[LutH⁺][BCl₄⁻]。整个反应放热6.0 kcal·mol⁻¹(ΔrG°=-1.1)。还探索了涉及硼正离子(LutBCl₂⁺)和四元硼环[(CH₂{NC₅H₃Me})BCl₂]的其他反应途径。H₂加成到Lut/LutBCl₂⁺对和硼环BC键上的能垒要高得多(分别为ΔG(≠)=42.1和49.4 kcal·mol⁻¹),因此这些途径被排除。H₂加成到硼环BN键上的能垒与之相当(ΔH(≠)=28.5和ΔG(≠)=32 kcal·mol⁻¹)。中间体2-(BHCl₂CH₂)-6-Me(C₅H₃NH)转化为Lut·BHCl₂可能通过涉及质子/氢化物转移到Lut/BCl₃的分子间步骤发生。直接形成Lut·BHCl₂的分子内质子脱硼反应因能垒较高(ΔH(≠)=52,ΔG(≠)=51 kcal·mol⁻¹)而被禁止。