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Isotopic Criteria in the Characterization of Aromatic Molecules.2.Influence of the Chemical Elaboration Process

机译:芳香分子表征的同位素判据2.化学精制过程的影响

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Most valued natural aromatic molecules can be substituted by their low-cost chemical counterparts.Isotopic methods,which offer the most powerful tool to infer the origin of a molecule,are applied to the characterization of a large number of chemical aromatic species.Isotopic affiliation between precursors and products is investigated in several types of reactions:oxidation of benzyl chloride and benzyl alcohol and hydrolysis of benzylidene chloride and cinnamaldehyde.The isotopic parameters strongly depend not only on the type of process but,for a given process,on the experimental conditions of the reaction.Kinetic isotope effects occurring in several formylation reactions are estimated.It is shown that,in the drastic experimental conditions of many industrial processes,the benzenic hydrogen atoms may be affected by exchange phenomena.Consequently,the site-specific isotopic parameters of the ring fragment of chemical species are usually much less stable than those of the corresponding natural molecules biosynthesized in mild environments.The isotope ratios of substituents such as CH_3,CH_2Cl,and CHO are more resistant to exchange and provide useful criteria for characterizing both the raw materials and the process.It is shown in particular that radical hydrogen abstraction in toluene to produce benzyl chloride induces relatively moderate fractionation effects.In contrast,oxidation reactions frequently produce strong fractionation effects.In particular,industrial direct oxidation of toluene into benzaldehyde is characterized by deuterium enrichments at the formyl site,which may exceed 900 ppm.Taking into account the large magnitude and high variability of many fractionation effects occurring in chemical reactions,the isotopic fingerprint may provide unambiguous criteria,not only for excluding a natural origin and characterizing the type of process,but also for differentiating molecules synthesized by a given process in different industrial contexts.The isotopic fingerprint may therefore be used by manufacturers as a powerful label for characterizing their production batches.
机译:最有价值的天然芳族分子可以用它们的低成本化学对等物代替。同位素方法是推断分子起源的最有力工具,它被用于表征大量化学芳族物质。在几种类型的反应中研究了前体和产物:苄基氯和苄醇的氧化以及亚苄基氯和肉桂醛的水解。同位素参数不仅很大程度上取决于过程的类型,而且对于给定的过程而言,还取决于反应条件。估算了几个甲酰化反应中发生的动力学同位素效应。研究表明,在许多工业过程的激烈实验条件下,苯甲酸氢原子可能会受到交换现象的影响。因此,该化合物的位点同位素参数化学物种的环片段通常比相应片段的稳定性差很多在温和的环境中生物合成的天然分子.CH_3,CH_2Cl和CHO等取代基的同位素比对交换的抵抗力更大,并为表征原料和过程提供了有用的标准,尤其表明了甲苯中自由基氢的提取相比之下,氧化反应通常会产生较强的分馏效果。特别是甲苯在甲苯中的工业富集特征是氘直接富集,可能会超过900 ppm。化学反应中发生的许多分馏效应的幅度很大且变化很大,同位素指纹图谱可以提供明确的标准,不仅用于排除自然来源并表征过程类型,而且还可以区分由给定过程合成的分子在不同的工业中同位素条纹因此,制造商可以将rprint用作强大的标签,以表征其生产批次。

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