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首页> 外文期刊>Advanced synthesis & catalysis >P-Stereogenic PN(H)P Iron(II) Catalysts for the Asymmetric Hydrogenation of Ketones: The Importance of Non-Covalent Interactions in Rational Ligand Design by Computation
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P-Stereogenic PN(H)P Iron(II) Catalysts for the Asymmetric Hydrogenation of Ketones: The Importance of Non-Covalent Interactions in Rational Ligand Design by Computation

机译:用于酮的不对称氢化的P-立体型PN(H)催化剂:计算下的非共价相互作用的重要性

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The P-stereogenic PN(H) P pincer ligands (R(Me) PCH2CH2)(2)NH (R= Cy, (S, S)-1a; R= tBu, (S, S)1b; R= Ph, (R, R)-1c) and their iron(II) derivatives [FeBr2(CO)(PN(H) P)] (2a-2c) and [FeHBr(CO)(PN(H) P)] (3a-3c) were developed by DFT-driven ligand design. In a preliminary study, the P(Cy) Me-based pincer (S, S)-1a and its Fe(II) complex 3a were prepared, tested in the asymmetric transfer hydrogenation of acetophenone, and studied by Density Functional Theory (DFT). Based on the good agreement between the experimental and calculated enantioselectivity, rational design of the pincer by DFT was attempted, which suggested high enantioselectivity for the tert-butyl and phenyl analogues 3b and 3c. Therefore, a new synthetic protocol was developed for (R, R)-1c using Buono's (S)-(1-(OH) Et) P(Me) Ph center dot BH3 as P-stereogenic synthon. Against the DFT prediction, 3c gave 1-phenylethanol with 44% ee, which was reproduced by increasing the level of theory from DFT to post-Hartree-Fock Moller-Plesset (MP2). This result can be explained by the overestimation of the enantiodeterming CH/pi interaction by DFT, which reiterates the need for accurate energies in the assessment of small energy differences such as in asymmetric catalysis.
机译:P-Tereogenic PN(H)P钳子配体(R(ME)PCH 2 CH 2)(2)NH(R = Cy,(S,S)-1a; r = TBU,(S,S)1B; r = pH, (R,R)-1C)及其铁(II)衍生物[FeBr2(CO)(PN(H)P)](2A-2C)和[FEHBR(CO)(PN(H)P)](3A- 3C)由DFT驱动配体设计开发。在初步研究中,制备P(CY)基于ME的钳子和其Fe(II)复合物3a,在苯酮的不对称转移氢化中测试,并通过密度函数理论(DFT)研究。基于实验和计算的对映射性之间的良好一致性,尝试了DFT的钳子的合理设计,这表明叔丁基和苯基类似物3b和3c的高对映射性。因此,使用Buono(s) - (1-(OH)et)p(me)pH中心点BH3作为P-Tereogenic Informon开发了一种新的合成方案 - (R,R)-1C开发了新的合成方案。在DFT预测中,3C给出1-苯基乙醇,具有44%EE,通过增加从DFT到Hartree-Fock Moller-Plesset(MP2)的理论水平来复制。该结果可以通过DFT的闭合术语CH / PI相互作用来估计来解释,这重申了在评估小能量差异的准确能量的需要,例如在不对称催化。

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