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首页> 外文期刊>Chemosphere >Regio- and stereoselective isomerization of hexabromocyclododecanes (HBCDs): Kinetics and mechanism of β-HBCD racemization
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Regio- and stereoselective isomerization of hexabromocyclododecanes (HBCDs): Kinetics and mechanism of β-HBCD racemization

机译:六溴环十二烷(HBCD)的区域和立体选择性异构化:β-HBCD外消旋的动力学和机理

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Hexabromocyclododecanes (HBCDs) are high production volume chemicals currently produced in quantities exceeding 20000 t y~(-1). They are used as flame retardants for plastics and textiles. HBCDs are thermally labile compounds, rapidly decomposing at temperatures above 250 ℃ to form bromine radicals, which scavenge other radicals formed during pyrolysis. But certain HBCD stereoisomers must reach the environment without decomposition, because their levels in soils, sediments, and biota are increasing worldwide. The fate of individual HBCD stereoisomers during production, product use, disposal, and transformation in the environment remains unclear. Herein we report on the thermally induced, highly selective isomerization of (+) and (-)P-HBCD. Regio- and stereoselective migration of only two of the six bromine atoms resulted in the racemization of both P-HBCDs. First order rate constants (k_(rac)) increased from 0.005, 0.011, 0.021, to 0.055 min~(-1) at 130, 140, 150, and 160 ℃, corresponding to half life times τ_(1/2) of 143, 63, 29, and 14 min, respectively. From the deduced kinetic model, we conclude that any thermal treatment of enantiomerically enriched P-HBCDs in the range of 100-160 ℃ will result in a loss of most optical activity within few hours. The simultaneous inversion of two asymmetric centers occurred with perfect stereocontrol. Selectively, vicinal dibromides with the RR- and the SS-configurations migrated at these temperatures. An intramolecular reaction mechanism with a four-center transition state is postulated, based on the obtained stereoisomer pattern and the observed reaction kinetics. Crystal structure analysis revealed that all vicinal dibromides in β-HBCDs prefer synclinal (gauche) conformations. However, an antiperiplanar (staggered) conformation is assumed to facilitate the concerted 1.2-shifts of both bromine atoms, resulting in an inversion of both neighboring carbon atoms. First experiments with other HBCD stereoisomers suggest that the presented isomerization mechanism is of relevance for those stereoisomers as well.
机译:六溴环十二烷(六溴环十二烷)是目前产量超过20000吨-1(-1)的高产量化学品。它们被用作塑料和纺织品的阻燃剂。六溴环十二烷是热不稳定的化合物,在高于250℃的温度下会迅速分解形成溴自由基,这些自由基清除了热解过程中形成的其他自由基。但是某些六溴环十二烷立体异构体必须在不分解的情况下进入环境,因为它们在土壤,沉积物和生物区系中的含量在世界范围内正在增加。六溴环十二烷立体异构体在生产,产品使用,处置和环境转化过程中的命运仍不清楚。在本文中,我们报道了(+)和(-)P-HBCD的热诱导,高度选择性异构化。六个溴原子中只有两个的区域和立体选择性迁移导致两个P-HBCD的外消旋化。一阶速率常数(k_(rac))在130、140、150和160℃时从0.005、0.011、0.021增加到0.055 min〜(-1),对应于143的半衰期τ_(1/2) ,分别为63、29和14分钟。根据推导的动力学模型,我们得出结论,在100-160℃范围内对对映体富集的P-HBCD进行任何热处理都会导致数小时内大部分光学活性的损失。完美的立体声控制使两个不对称中心同时发生反转。选择性地,具有RR-和SS-构型的邻二溴化物在这些温度下迁移。基于获得的立体异构体图案和观察到的反应动力学,推测具有四中心过渡态的分子内反应机理。晶体结构分析表明,β-六溴环十二烷中的所有邻位二溴化物都更喜欢向斜(gauche)构象。然而,假定反周平面(交错)构象有助于两个溴原子的一致1.2移位,从而导致两个相邻碳原子的倒置。与其他六溴环十二烷立体异构体的首次实验表明,提出的异构化机理也与那些立体异构体相关。

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