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Mechanochemical and slow-chemistry radical transformations: a case of diorganozinc compounds and TEMPO

机译:机械化学和慢化学自由基转化:一例二有机锌化合物和TEMPO

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From the green chemistry perspective, molecular solid-state transformations conducted under mild conditions are of great interest and desirability. However, research in this area lacked popularity in the previous century, and thus progressed slowly. In particular, the application of radical reactions in solid-state chemistry has been hampered by several long-standing challenges that are intrinsically associated with the apparent unpredictable nature of radical chemistry. We present a comparative study of model mechanochemical, slow-chemistry and solution radical reactions between TEMPO and homoleptic organozinc compounds ( i.e. , di- tert -butylzinc and diphenylzinc). In the case of the t Bu _(2) Zn/TEMPO reaction system only a dimeric diamagnetic complex [ t BuZn(μ-TEMPO*)] _(2) is obtained in yields slightly varying with the method chosen. In contrast, when TEMPO is mixed with diphenylzinc in a 2?:?1 molar ratio a novel paramagnetic Lewis acid–base adduct [[Ph _(2) Zn(η ~(1) -TEMPO)]·TEMPO] is isolated in high yields regardless of the applied methodology. This adduct is also formed in the slow-chemistry process when TEMPO is gently mixed with Ph _(2) Zn in a 1?:?1 molar ratio and left for two weeks at ambient temperature. Within the next week the reaction mixture gives in high yield a diamagnetic dinuclear compound [PhZn(μ-TEMPO*)][PhZn(μ _(2) -η ~(1) :η ~(1) -TEMPO*)] and biphenyl. The analogous reaction conducted in toluene results in a much lower conversion rate. The reported results open up a new horizon in molecular solid-state radical transformations.
机译:从绿色化学的角度来看,在温和条件下进行的分子固态转化是非常令人感兴趣和令人期望的。然而,该领域的研究在上个世纪缺乏普及,因此进展缓慢。特别是,自由基反应在固态化学中的应用受到一些长期存在的挑战的阻碍,这些挑战与自由基化学的表观不可预测性本质上相关。我们对TEMPO和均质有机锌化合物(即二叔丁基锌和二苯基锌)之间的机械化学,慢化学和溶液自由基反应模型进行了比较研究。在t Bu _(2)Zn / TEMPO反应系统的情况下,仅获得二聚抗磁性配合物[t BuZn(μ-TEMPO*)] _(2),其收率随所选择的方法略有不同。相反,当TEMPO与二苯基锌以2?:?1的摩尔比混合时,新型的顺磁性路易斯酸碱加合物[[Ph _(2)Zn(η〜(1)-TEMPO)]·TEMPO]被分离出来。不论采用哪种方法,都能获得高产量。当TEMPO与Ph _(2)Zn以1?:?1的摩尔比缓慢混合并在环境温度下放置两周时,这种加合物也在慢化学过程中形成。在接下来的一周内,反应混合物以高收率获得了抗磁性双核化合物[PhZn(μ-TEMPO*)] [PhZn(μ_(2)-η〜(1):η〜(1)-TEMPO *)]和联苯。在甲苯中进行的类似反应导致低得多的转化率。报道的结果为分子固态自由基转化开辟了新的视野。

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