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H2TPP Organocatalysis in Mild and Highly Regioselective Ring Opening of Epoxides to Halo Alcohols by Means of Halogen Elements

机译:H2TPP在轻度和高度区域选择性环氧化物中通过卤素元素对卤代醇的有机催化

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摘要

We found that elemental iodine and bromine are converted to trihalide nucleophiles (triiodine and tribromide anion, respectively) in the presence of catalytic amounts of meso-tetraphenylporphyrins (H2TPP). Therefore a highly regioselective method for the synthesis of β-haloalcohols through direct ring opening of epoxides with elemental iodine and bromine in the presence of H2TPPs as new catalysts is described. At room temperature a series of epoxide derivatives were converted into the corresponding halohydrins resulting from an attack of trihalide species anion atoms at the less substituted carbon atom. This method occurs under neutral and mild conditions with high yields in various aprotic solvents, even when sensitive functional groups are present.
机译:我们发现,在催化量的中四苯基卟啉(H2TPP)存在下,元素碘和溴被转化为三卤代亲核试剂(分别为三碘和三溴阴离子)。因此,描述了在作为新催化剂的H 2 TPPs存在下通过与元素碘和溴的环氧化物直接开环来合成β-卤代醇的高度区域选择性的方法。在室温下,由于三卤化物物种阴离子原子在较少取代的碳原子上的进攻,一系列的环氧衍生物被转化为相应的卤代醇。即使存在敏感的官能团,该方法也可在中性和温和条件下在各种非质子溶剂中以高收率进行。

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