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Acid-Catalyzed Decomposition of the Benzyl Nitrite Intermediate in HNO3-Mediated Aerobic Oxidation of Benzyl Alcohol

机译:HNO3介导的苄醇的苄基亚硝酸盐中间体的酸催化分解中间体

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摘要

Benzyl nitrite (PhCH2ONO) was previously identified as the pivotal intermediate in the HNO3-mediated oxidation of benzyl alcohol. Its acid-catalyzed decomposition yields benzaldehyde and HNO, the precursor of undesirable N2O. Most likely, an analogous mechanism is responsible for the formation of N2O during the oxidation of cyclohexanol and cyclohexanone to adipic acid, the largest industrial source of this important greenhouse gas. In this paper, the decomposition of benzyl nitrite is studied in more detail, allowing the kinetic isotope effect and the influence of substituents to be determined. A linear EvansPolanyi correlation between the measured Arrhenius activation energies and the computed reaction energies was established. Furthermore, the differences in the reactivities of the substituted benzyl nitrites are reflected in the oxidation of the corresponding alcohols, and also affect the rate-determining step in the overall mechanism. The results of this study corroborate the importance of the nitrite intermediate in HNO3-based oxidation technology.
机译:先前苄基亚硝酸盐(PHCH2ONO)被鉴定为HNO3介导的苄醇氧化中的枢转中间体。其酸催化的分解产生苯甲醛和HNO,不希望的N2O的前体。最有可能的是,类似机制是在环己醇和环己酮的氧化过程中形成N2O,这是这种重要的温室气体的最大工业来源。在本文中,更详细地研究了亚硝酸盐的分解,允许动力学同位素效应和取代基的影响确定。建立了测量的Arhenius激活能和计算的反应能量之间的线性Evanspolanyi相关性。此外,取代苄基亚硝酸盐的反应性的差异反映在相应醇的氧化中,并且还影响整个机制中的速率确定步骤。该研究的结果证实了亚硝酸盐中间体在基于HNO3的氧化技术中的重要性。

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