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Substituent-controlled mild oxidative fluorination of iodoarenes: synthesis and structural study of aryl I(iii)- and I(v)-fluorides

机译:取代基控制的碘芳烃的轻度氧化氟化:芳基I(iii)-和I(v)-氟化物的合成和结构研究

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摘要

We report a mild approach to the synthesis of difluoro(aryl)-λ3-iodanes (aryl-IF2 compounds) and tetrafluoro(aryl)-λ5-iodanes (aryl-IF4 compounds) using trichloroisocyanuric acid (TCICA) and potassium fluoride (KF). Under these reaction conditions, selective access to either the I(iii)- or I(v)-derivatives is predictable based solely on the substitution pattern of the iodoarene starting material. Moreover, the discovery of this TCICA/KF approach prompted detailed dynamic NMR, kinetic, computational, and crystallographic studies on the relationship between the IF2 group and the ortho-substituents on carefully designed probe molecules. It was during these experiments that the role of the ortho-substituent in inhibiting further oxidative fluorination of I(iii)-compounds to I(v)-compounds during the reaction with TCICA and KF was revealed. Additionally, a notable exception to this empirical trend is discussed herein.
机译:我们报道了一种温和的合成二氟(芳基)-λ 3 -碘酮(芳基-IF2化合物)和四氟(芳基)-λ 5 -碘酮(芳基)的方法-IF4化合物),使用三氯异氰尿酸(TCICA)和氟化钾(KF)。在这些反应条件下,仅基于碘芳烃原料的取代模式,可以预测对I(iii)-或I(v)衍生物的选择性进入。此外,这种TCICA / KF方法的发现促使人们对精心设计的探针分子上IF2基团与邻位取代基之间的关系进行了详细的动态NMR,动力学,计算和晶体学研究。正是在这些实验中,揭示了邻位取代基在与TCICA和KF反应期间抑制I(iii)化合物进一步氧化为I(v)化合物的氟化作用。另外,本文讨论了该经验趋势的显着例外。

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