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Asymmetric ion-pairing catalysis of the reversible cyclization of 2'-hydroxychalcone to flavanone: Asymmetric catalysis of an equilibrating reaction

机译:2'-羟基查尔酮可逆环化为黄烷酮的不对称离子对催化:平衡反应的不对称催化

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摘要

The asymmetric catalytic cyclization of the simple 2'-hydroxychalcone (1) to flavanone (2), a model for the chalcone isomerase reaction, has been realized as a catalytic asymmetric ion-pairing process with chiral quaternary ammonium salts (e.g., 9-anthracenylmethlycinchoninium chloride; 9-Am-CN-Cl) and NaH as small-molecule co-catalyst. In toluene/CHCl _3 solution, the process reaches an intrinsic enantioselectivity of up to S = 14.4 (er = 93.5:6.5). The reversible reaction proceeds in two steps: A fast initial reaction approaches a quasi-equilibrium with K _(R/S) = 4.5, followed by a second, slow racemization phase approaching K _(rac) = 9. A simple mechanistic model featuring a living ion-pairing catalysis with full reversibility is proposed. Deuterium transfer from co-solvent CDCl _3 to product 2 and isolation of a Michael conjugate formed from 2 and 1 demonstrate the intermediacy of flavanone enolate ion pairs. A kinetic model shows good agreement with the experimentally observed, peculiar, time-dependent evolution of the species concentrations and the enantiomeric excess of 2. The reaction is a chemical model of the chalcone isomerase enzymatic reaction. Furthermore, it is an ideal model for studying the characteristic behavior of reversible asymmetric catalyses close to their equilibria.
机译:简单的2'-羟基查耳酮(1)到黄烷酮(2)(查尔酮异构酶反应的模型)的不对称催化环化已实现为具有手性季铵盐(例如9-蒽基甲基甲基辛基铵盐)的催化不对称离子对过程。氯化物; 9-Am-CN-Cl)和NaH作为小分子助催化剂。在甲苯/ CHCl _3溶液中,该过程的固有对映选择性高达S = 14.4(er = 93.5:6.5)。可逆反应分两步进行:快速初始反应接近准平衡,K _(R / S)= 4.5,接着是第二个缓慢消旋化阶段,接近K _(rac)=9。简单的机械模型具有提出了具有完全可逆性的活性离子对催化。氘从共溶剂CDCl_3转移至产物2以及从2和1形成的Michael共轭物的分离证明了黄烷酮烯醇酸离子对的中间性。动力学模型与物种浓度和2的对映异构体过量的实验观察到的,随时间变化的演化表现出良好的一致性。该反应是查耳酮异构酶酶促反应的化学模型。此外,它是研究可逆的不对称催化剂接近其平衡的特征行为的理想模型。

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