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首页> 外文期刊>Chemistry: A European journal >On the Mechanism of Arene-Catalyzed Lithiation: The Role of Arene Dianions-Naphthalene Radical Anion versus Naphthalene Dianion
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On the Mechanism of Arene-Catalyzed Lithiation: The Role of Arene Dianions-Naphthalene Radical Anion versus Naphthalene Dianion

机译:芳烃催化的锂化机理的研究:芳烃二价阴离子-萘自由基阴离子与萘二价阴离子的作用

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摘要

The use of lithium and a catalytic amount of an arene is a well-established methodology for the preparation of organolithium reagents that manifest greater reactivity than the classical lithium-arene solutions. In order to rationalize this conduct, the participation of a highly reduced species, the dianion, is proposed and its reactivity explored. Studies of kinetics and of distribution of products reveal that the electron-transfer (ET) reactivity profile of dilithium naphthalenide in its reaction with organic chlorides excludes alternative mechanisms of halogen-lithium exchange. The process generates organolithium compounds. The dianion thus emerges along with the radical anion as a suitable candiate for catalytic cycles in certain processes. Endowed with a higher redox potential than its radical anin counterpart, dilithium naphthalene displays a broader spectrum of reactivity and so increases the range of substraets suitable for lithiation. The reaction of dilithium naphthalene with THF is one example of the divergent reactivity of the radical anion and the dianin, which has been the source of apparent misinterpretation of results in the past and has now been appropriately addressed.
机译:使用锂和催化量的芳烃是一种制备有机锂试剂的公认方法,该有机锂试剂表现出比传统的锂-芳烃溶液更高的反应性。为了使这种行为合理化,提出了高度还原的物种二价阴离子的参与,并探讨了其反应性。动力学和产物分布的研究表明,萘二甲酸二锂与有机氯化物的反应中的电子转移(ET)反应性谱排除了卤素-锂交换的替代机理。该过程产生有机锂化合物。因此,二价阴离子与自由基阴离子一起出现,成为某些过程中催化循环的合适候选物。具有比其自由基anin对应物更高的氧化还原电势,双锂萘具有更广的反应活性谱,因此增加了适合锂化的亚基的范围。萘二锂与THF的反应是自由基阴离子与二氢阴离子发散反应性的一个例子,过去它一直是对结果产生明显误解的根源,现已得到适当解决。

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