Department of Chemistry and Biochemistry, Swarthmore College, 500 College Avenue, Swarthmore, Pennsylvania 19081, United States.
J Phys Chem A. 2023 May 25;127(20):4492-4502. doi: 10.1021/acs.jpca.3c00542. Epub 2023 May 10.
Master equation simulations of the unimolecular reaction dynamics of the Criegee intermediate methacrolein oxide (MACR oxide) have been performed under a variety of temperature and pressure conditions. These simulations provide insight into how the unimolecular kinetics vary across temperatures spanning the range 288-320 K. This work has incorporated a new potential energy surface and includes the anti-to-syn and cis-to-trans conformational dynamics of MACR oxide, as well as the unimolecular reactions to form dioxirane and dioxole species. The competition between the unimolecular reactivity of MACR oxide and previously documented bimolecular reactivity of MACR oxide with water vapor is explored, focusing on how this competition is affected by changes in atmospheric conditions. The impact on the role of MACR oxide as an atmospheric oxidant of SO is noted.
已在各种温度和压力条件下对单分子反应动力学的克里格中间态甲基丙烯醛氧化物(MACR 氧化物)进行了主方程模拟。这些模拟深入了解了在 288-320 K 范围内的温度范围内,单分子动力学如何变化。这项工作结合了一个新的势能面,包括 MACR 氧化物的反式-顺式和顺式-反式构象动力学,以及形成环二氧乙烷和二氧杂环戊烷物种的单分子反应。探讨了 MACR 氧化物的单分子反应性与先前记录的 MACR 氧化物与水蒸气的双分子反应性之间的竞争,重点关注大气条件变化如何影响这种竞争。还注意到了 MACR 氧化物作为大气氧化剂 SO 的作用的影响。