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Assessment of steric and electronic effects of N-heterocyclic carbenes in grubbs olefin metathesis using molecular electrostatic potential

机译:使用分子静电势评估N-杂环卡宾在格拉布斯烯烃复分解反应中的空间和电子效应

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摘要

The steric and electronic effects of N-heterocyclic carbenes in the second-generation Grubbs olefin metathesis catalysts are quantified on the basis of molecular electrostatic potential at the carbene carbon of both the NHC ligand (V_(C1)) and the alkylidene moiety (V_(C2)). The quantity (V_(C1)+V_(C2)), calculated separately for the active form of the catalyst, (sImR_2NR_2)Cl_2RudCH_2 (1), and the ethylene-bound complex, (sImR_2NR_2)Cl _2RudCH_2(C_2H4) (2), reflected the combined steric and electronic effects of the NHC. For every 1 and 2 systems, R is replaced with H and all other nuclear coordinates are frozen to obtain respectively 1' and 2'. The quantity (V_(C1)' +V_(C2)') of 10 and 20 served as a good measure of the steric effect of the NHC. For a normalization procedure, (V _(C1) + V_(C2)) and (V_(C1)' + V_(C2)') for any R is considered relative to R = H to define the combined steric and electronic effect of NHCs in the complexes 1 (VSE_1) and 2 (VSE_2) as well as the steric effect in 1 (VS_1) and 2 (VS_2). Thus the electronic effect of the active form, VE_1, is (VSE_1 - VS_1) and that of the olefin-bound complex, VE_2, is (VSE_2 -VS _2). Both VS1 and VS_2 showed good linear correlation with the volume-based steric parameter, the buried volume (%V_(Bur)) developed by Cavallo et al. In complexes with less bulky NHCs, ethylene is coordinated to the active form with an orientation parallel to the alkylidene moiety (mode A binding; binding energy, E_1 is 5-9 kcal/mol), whereas in complexes with stericaly bulky NHCs, ethylene is coordinated to the active form only in a plane perpendicular to the alkylidine moiety (mode B binding; E1 is?10.0 kcal/mol). In mode A binding, E_1 as well as E_2 for the metallacyclobutane formation decreased with an increase in both the steric and electron-donating effects of the NHC ligand. The systems with -CF_3 as N-substituent deviated significantly from the (E _1, VE_1) correlation line due to the presence of Ru?F interaction. In mode B binding, E_1 and E_2 increased with an increase in the steric effect, while the electronic effect showed no correlation with either E_1 or E_2. Thus, if theNHCis bulky, the steric effect will dominate over the electronic effect and will control the metathesis, whereas the electronic and steric effect will have almost equal importance in metathesis activity of the catalyst with less bulky NHCs. Lone-pair interactions of the type Ru?F have the ability to significantly alter the catalytic activity.
机译:基于在NHC配体(V_(C1))和亚烷基部分(V_(两者之间)的卡宾碳上的分子静电势来量化第二代Grubbs烯烃复分解催化剂中N-杂环卡宾的空间和电子效应C2))。针对催化剂的活性形式(sImR_2NR_2)Cl_2RudCH_2(1)和与乙烯结合的络合物(sImR_2NR_2)Cl _2RudCH_2(C_2H4)(2)分别计算的量(V_(C1)+ V_(C2))反映了NHC的空间和电子效应。对于每个1和2系统,R均被H取代,所有其他核坐标被冻结,分别获得1'和2'。 10和20的数量(V_(C1)'+ V_(C2)')可很好地衡量NHC的空间效应。对于归一化过程,相对于R = H,考虑任何R的(V _(C1)+ V_(C2))和(V_(C1)'+ V_(C2)'),以定义配合物1(VSE_1)和2(VSE_2)中的NHC以及1(VS_1)和2(VS_2)中的空间效应。因此,活性形式VE_1的电子效应为(VSE_1-VS_1),而与烯烃结合的络合物VE_2的电子效应为(VSE_2 -VS _2)。 VS1和VS_2与基于体积的空间参数,即Cavallo等人开发的掩埋体积(%V_(Bur))均显示出良好的线性相关性。在具有较小体积的NHC的配合物中,乙烯以平行于亚烷基部分的方向配位到活性形式(模式A结合;结合能,E_1为5-9 kcal / mol),而在具有空间体积的NHC的配合物中,乙烯为仅在与亚烷基部分垂直的平面上与活性形式配位(模式B结合; E1为〜10.0kcal / mol)。在模式A结合中,金属环环丁烷形成的E_1以及E_2随着NHC配体的空间和给电子作用的增加而降低。由于存在Ru?F相互作用,以-CF_3作为N取代基的系统与(E _1,VE_1)相关线有明显偏离。在模式B绑定中,E_1和E_2随着空间效应的增加而增加,而电子效应则与E_1或E_2无关。因此,如果NHC是大体积的,则空间效应将超过电子效应并控制复分解,而电子和空间效应在NHC体积较小的催化剂的复分解活性中具有几乎相同的重要性。 Ru 2 F类型的孤对相互作用具有显着改变催化活性的能力。

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