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Origin of enantioselective reduction of quaternary copper d,l amino acid complexes under vibrational activation conditions

机译:振动活化条件下季铜d,l氨基酸复合物对映选择性还原的起源

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摘要

Phenylglycine (Phg), a non natural amino acid was used as chiral selector for the distinction of l/d amino acids through enantioselective Cu ~(II) reduction. The investigation of the chiral effects was performed based on the dissociation of copper quaternary complexes involving phenylglycine: [Cu ~(II),(Phg,AA _1,AA _2-H)] ~+. The main cleavage was the competitive formal loss of Phg and [Phg-H] ? yielding the [Cu ~(II),(AA _1,AA _2-H)] ~+ and [Cu ~I,(AA _1,AA _2)] ~+ ions respectively. The later involving a stepwise process with CO _2 loss and a concomitant Cu ~(II) reduction. The relative extent of this competitive process appeared to be strongly enantioselective. This led us to explore the origin of the observed enantiomeric reduction from dissociations of copper AAs complexes. With this aim, smaller [Cu ~(II),(Phg,AA-H)] ~+ ternary complexes have been investigated and MS ~n together with double resonance-IRMPD experiments have been conducted. The existence of zwitterions was considered in order explain the role of gas phase acidity and proton affinity on the enantioselective reduction.
机译:非天然氨基酸苯基甘氨酸(Phg)被用作手性选择剂,通过对映选择性Cu〜(II)还原来区分l / d氨基酸。基于涉及苯基甘氨酸的铜四元配合物:[Cu〜(II),(Phg,AA _1,AA _2-H)]〜+的解离,进行了手性作用的研究。主要的裂解是Phg和[Phg-H]的竞争形式损失。分别产生[Cu〜(II),(AA _1,AA _2-H)]〜+和[Cu〜I,(AA _1,AA _2)]〜+离子。后者涉及具有CO _2损失和伴随的Cu〜(II)还原的逐步过程。这种竞争过程的相对程度似乎具有很强的对映选择性。这使我们探索了从铜AA络合物解离中观察到的对映异构体还原的起源。为此目的,研究了较小的[Cu〜(II),(Phg,AA-H)]〜+三元配合物,并进行了MS〜n结合双共振IRMPD实验。考虑两性离子的存在是为了解释气相酸度和质子亲和力在对映选择性还原中的作用。

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