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三唑的电子性质。碳阳离子和自由基稳定性质的实验和计算测定。

Electronic Properties of Triazoles. Experimental and Computational Determination of Carbocation and Radical-Stabilizing Properties.

机构信息

Department of Chemistry and Biochemistry, University of Notre Dame , Notre Dame, Indiana 46556, United States.

出版信息

J Org Chem. 2017 Jun 2;82(11):5720-5730. doi: 10.1021/acs.joc.7b00548. Epub 2017 May 15.

Abstract

Three fluorobenzenes substituted with meta-triazole groups have been prepared, and F chemical shifts indicate that these triazole groups are all inductively electron-withdrawing in character, with the 1,5-triazole being the most electron-withdrawing. σ values for these three triazoles have also been determined from solvolysis rates of substituted cumyl trifluoroacetates. When substituted in the para-position, the 1,4 and the 2,4-triazoles are cation-stabilizing, whereas the 1,5-triazole is carbocation-destabilizing. γ values indicate that the 1,4 triazole group is cation-stabilizing relative to the phenyl group, albeit the 1,5 triazole is significantly destabilizing relative to phenyl. These studies all suggest that the 1,5-triazole group exerts a strong electron-withdrawing effect on carbocations that is not offset by a resonance effect. The three triazole groups all enhance the methylenecyclopropane rearrangement rate and are therefore radical stabilizers. The smallest stabilizing effect is seen for the 1,5-triazole, and this is attributed to the triazole group being twisted out of conjugation in the developing benzylic radical. Finally, the anionic triazole group is the most effective radical-stabilizing group. Computational studies indicate that these triazole groups all stabilize benzylic radicals by a spin delocalization mechanism.

摘要

三种带有间位三唑基团的氟苯已被制备,氟化学位移表明这些三唑基团均具有吸电子诱导效应,其中 1,5-三唑的吸电子能力最强。还通过取代芐基三氟乙酸酯的溶剂解速率确定了这三个三唑的 σ 值。当在对位取代时,1,4-和 2,4-三唑是阳离子稳定的,而 1,5-三唑是碳正离子不稳定的。γ 值表明,相对于苯基,1,4-三唑基团是阳离子稳定的,尽管 1,5-三唑相对于苯基的稳定性明显降低。这些研究都表明,1,5-三唑基团对碳正离子具有很强的吸电子效应,这种效应不会被共振效应抵消。这三个三唑基团都增强了亚甲基环丙烷重排的速率,因此都是自由基稳定剂。对于 1,5-三唑,其稳定作用最小,这归因于三唑基团在形成苄基自由基时扭曲而失去共轭。最后,阴离子三唑基团是最有效的自由基稳定基团。计算研究表明,这些三唑基团均通过自旋离域机制稳定苄基自由基。

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