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首页> 外文期刊>Chemistry: A European journal >Temperature Dual Enantioselective Control in a Rhodium-Catalyzed Michael-Type Friedel-Crafts Reaction: A Mechanistic Explanation
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Temperature Dual Enantioselective Control in a Rhodium-Catalyzed Michael-Type Friedel-Crafts Reaction: A Mechanistic Explanation

机译:铑催化的Michael型Friedel-Crafts反应中的温度双重对映选择性控制:机理的解释。

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By changing the temperature from 283 to 233 K, the S (99% ee) or R (96% ee) enantiomer of the Friedel-Crafts (FC) adduct of the reaction between N-methyl-2-methylindole and trans-beta-nitrostyrene can be obtained by using (S-Rh,R-C)-[(eta(5)-C5Me5)Rh{(R)-Prophos}(H2O)][SbF6](2) as the catalyst precursor. This catalytic system presents two other uncommon features: 1) The ee changes with reaction time showing trends that depend on the reaction temperature and 2) an increase in the catalyst loading results in a decrease in the ee of the S enantiomer. Detection and characterization of the intermediate metal-nitroalkene and metal-aci-nitro complexes, the free aci-nitro compound, and the FC adduct-complex, together with solution NMR measurements, theoretical calculations, and kinetic studies have allowed us to propose two plausible alternative catalytic cycles. On the basis of these cycles, all the above-mentioned observations can be rationalized. In particular, the reversibility of one of the cycles together with the kinetic resolution of the intermediate aci-nitro complexes account for the high ee values achieved in both antipodes. On the other hand, the results of kinetic measurements explain the unusual effect of the increment in catalyst loading.
机译:通过将温度从283 K更改为233 K,N-甲基-2-甲基吲哚与反式-β-二甲基间苯二酚的反应的弗里德-克拉夫茨(FC)加合物的S(99%ee)或R(96%ee)对映体硝基苯乙烯可以通过使用(S-Rh,RC)-[(eta(5)-C5Me5)Rh {(R-Prophos}(H2O)] [SbF6](2)作为催化剂前体获得。该催化体系还具有另外两个不常见的特征:1)ee随着反应时间的变化而变化,其趋势取决于反应温度; 2)催化剂载量的增加导致S对映异构体ee的降低。中间体金属-硝基烯烃和金属-α-硝基-硝基配合物,游离的α-硝基-硝基化合物和FC加合物的检测和表征,连同溶液NMR测量,理论计算和动力学研究,使我们提出了两个合理的解释替代催化循环。在这些周期的基础上,所有上述观察结果都可以合理化。特别地,循环之一的可逆性与中间的α-硝基配合物的动力学拆分一起解释了在两种对映体中均获得的高ee值。另一方面,动力学测量的结果解释了催化剂负载增加的不寻常影响。

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