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甲基自由基与作为氢供体和甲基自由基受体的苯胺的反应。

Reactions of Methyl Radicals with Aniline Acting as Hydrogen Donors and as Methyl Radical Acceptors.

作者信息

Pham Tien V, Trang Hoang T T

机构信息

School of Chemical Engineering, Hanoi University of Science and Technology, Hanoi 100000, Vietnam.

Department of Chemistry, Hanoi Architectural University, Hanoi 100000, Vietnam.

出版信息

ACS Omega. 2023 May 1;8(19):17005-17016. doi: 10.1021/acsomega.3c01029. eCollection 2023 May 16.

Abstract

The present investigation theoretically reports the comprehensive kinetic mechanism of the reaction between aniline and the methyl radical over a wide range of temperatures (300-2000 K) and pressures (76-76,000 Torr). The potential energy surface of the CHNH + CH reaction has been established at the CCSD(T)//M06-2X/6-311++G(3df,2p) level of theory. The conventional transition-state theory (TST) was utilized to calculate rate constants for the elementary reaction channels, while the stochastic RRKM-based master equation framework was applied for the - and -dependent rate-coefficient calculation of multiwell reaction paths. Hindered internal rotation and Eckart tunneling treatments were included. The H-abstraction from the -NH group of aniline (to form P1 (CHNH + CH)) has been found to compete with the CH-addition on the C atom at the ortho site of aniline (to form IS2) with the atmospheric rate expressions (in cm molecule s) as = 7.5 × 10 T exp[(-40.63 ± 0.29 kJ·mol)/RT] and = 2.29 × 10 T exp[(-56.94 ± 1.17 kJ·mol)/RT] for = 300-2000 K and = 760 Torr. Even though rate constants of several reaction channels decrease with increasing pressures, the total rate constant = 7.71 × 10 T exp[(-40.96 ± 2.18 kJ·mol)/RT] of the title reaction still increases as the pressure increases in the range of 76-76,000 Torr. The calculated enthalpy changes for some species are in good agreement with the available experimental data within their uncertainties (the maximum deviation between theory and experiment is ∼11 kJ·mol). The T1 diagnostic and spin contamination analysis for all species involved have also been observed. This work provides sound quality rate coefficients for the title reaction, which will be valuable for the development of detailed combustion reaction mechanisms for hydrocarbon fuels.

摘要

本研究从理论上报道了苯胺与甲基自由基在较宽温度范围(300 - 2000 K)和压力范围(76 - 76000 Torr)下反应的综合动力学机制。在CCSD(T)//M06 - 2X/6 - 311++G(3df,2p)理论水平上建立了CHNH + CH反应的势能面。采用传统过渡态理论(TST)计算基元反应通道的速率常数,同时应用基于随机RRKM的主方程框架计算多阱反应路径的压力和温度依赖的速率系数。包括受阻内旋转和埃卡特隧穿处理。已发现从苯胺的 -NH基团上夺取H(形成P1(CHNH + CH))与苯胺邻位C原子上的CH加成(形成IS2)相互竞争,在760 Torr和300 - 2000 K时,大气速率表达式(单位为cm³ molecule⁻¹ s⁻¹)分别为k₁ = 7.5 × 10⁻¹³ T⁻¹.⁵ exp[(-40.63 ± 0.29 kJ·mol⁻¹)/RT]和k₂ = 2.29 × 10⁻¹² T⁻¹.⁵ exp[(-56.94 ± 1.17 kJ·mol⁻¹)/RT]。尽管几个反应通道的速率常数随压力增加而降低,但在76 - 76000 Torr范围内,标题反应的总速率常数k = 7.71 × 10⁻¹³ T⁻¹.⁵ exp[(-40.96 ± 2.18 kJ·mol⁻¹)/RT]仍随压力增加。计算得到的一些物种的焓变在其不确定度范围内与现有实验数据高度吻合(理论与实验之间的最大偏差约为11 kJ·mol⁻¹)。还对所有涉及的物种进行了T1诊断和自旋污染分析。这项工作为标题反应提供了高质量的速率系数,这对于开发烃类燃料的详细燃烧反应机理将具有重要价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/73d0/10193547/52cb55e48738/ao3c01029_0002.jpg

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