Ragnarsson Ulf, Grehn Leif, Koppel Juta, Loog Olavi, Tsubrik Olga, Bredikhin Aleksei, Mäeorg Uno, Koppel Ilmar
Department of Biochemistry, University of Uppsala, Biomedical Center, P.O. Box 576, SE-751 23 Uppsala, Sweden.
J Org Chem. 2005 Jul 22;70(15):5916-21. doi: 10.1021/jo050680u.
The pK(a) values in DMSO for 22 di- and triprotected hydrazine NH acids and two monosubstituted hydrazines have been determined using potentiometric titration. The results of density functional theory calculations at the B3LYP/6-311+G level of gas-phase acidities of a representative selection of mono-, di-, and trisubstituted hydrazines are compared with both the relevant published and novel experimental titration data. In the course of this work, a rough estimation of the pK(a) value of hydrazine in DMSO (ca. 38.0) has been deduced. For typical triprotected compounds of this kind containing moderately electron-withdrawing carbamate and imidodicarbonate or arenesulfonylcarbamate functions the pK(a) values fall in the range 15.1-17.3, whereas for N,N'-diprotected hydrazines with a carbamate and an aromatic sulfonyl group the corresponding values are 12.7-14.5. Several of these triprotected derivatives have recently been applied preparatively in stepwise synthesis of substituted hydrazines using alkyl halides as electrophiles in the presence of a phase transfer catalyst, and a few of them, with varying success, have been examined in model experiments with benzyl alcohol, triphenylphosphine, and diethyl azodicarboxylate in the Mitsunobu reaction. The dependence of the reactivity on the intrinsic acidity of the hydrazines in this reaction is highlighted. Furthermore, the regioselective alkylation of an N,N'-diprotected hydrazine can be rationalized on the basis of the presented data.
使用电位滴定法测定了22种二保护和三保护肼NH酸以及两种单取代肼在二甲基亚砜(DMSO)中的pK(a)值。将在B3LYP/6-311+G水平上对代表性的单取代、二取代和三取代肼的气相酸度进行密度泛函理论计算的结果,与相关已发表的和新的实验滴定数据进行了比较。在这项工作过程中,推导出了肼在DMSO中的pK(a)值的粗略估计值(约38.0)。对于这类典型的含有中等吸电子氨基甲酸酯和亚氨基二碳酸酯或芳基磺酰氨基甲酸酯官能团的三保护化合物,pK(a)值在15.1 - 17.3范围内,而对于具有氨基甲酸酯和芳基磺酰基的N,N'-二保护肼,相应的值为12.7 - 14.5。最近,其中几种三保护衍生物已被用于在相转移催化剂存在下,以卤代烷为亲电试剂逐步合成取代肼的制备中,并且其中一些在与苯甲醇、三苯基膦和偶氮二羧酸二乙酯的 Mitsunobu 反应的模型实验中进行了研究,取得了不同程度的成功。强调了该反应中反应性对肼固有酸度的依赖性。此外,根据所提供的数据,可以合理地解释N,N'-二保护肼的区域选择性烷基化。