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C6H5 + C6H5NO反应机理及速率常数的计算研究

Computational study on the mechanism and rate constant for the C6H5 + C6H5NO reaction.

作者信息

Xu Z F, Lin M C

机构信息

Department of Chemistry, Emory University, Atlanta, Georgia 30322, USA.

出版信息

J Phys Chem A. 2005 Oct 13;109(40):9054-60. doi: 10.1021/jp0522157.

Abstract

The reaction mechanism of C6H5 + C6H5NO involving four product channels on the doublet-state potential energy surface has been studied at the B3LYP/6-31+G(d, p) level of theory. The first reaction channel occurs by barrierless association forming (C6H5)2NO (biphenyl nitroxide), which can undergo isomerization and decomposition. The second channel takes place by substitution reaction producing C12H10 (biphenyl) and NO. The third and fourth channels involve direct hydrogen abstraction reactions producing C6H4NO + C6H6 and C6H5NOH + C6H4, respectively. Bimolecular rate constants of the above four product channels have been calculated in the temperature range 300-2000 K by the microcanonical Rice-Ramsperger-Kassel-Marcus theory and/or variational transition-state theory. The result shows the dominant reactions are channel 1 at lower temperatures (T < 800 K) and channel 3 at higher temperatures (T > 800 K). The total rate constant at 7 Torr He is predicted to be k(t) = 3.94 x 10(21) T(-3.09) exp(-699/T) for 300-500 K, 2.09 x 10(20) T(-3.56) exp(2315/T) for 500-1000 K, and 1.51 x 10(2) T(3.30) exp(-3043/T) for 1000-2000 K (in units of cm3 mol(-1) s(-1)), agreeing reasonably with the experimental data within their reported errors. The heats of formation of key products including biphenyl nitroxide, hydroxyl phenyl amino radical, and N-hydroxyl carbazole have been estimated.

摘要

在B3LYP/6 - 31+G(d, p)理论水平下,研究了C6H5 + C6H5NO在双重态势能面上涉及四个产物通道的反应机理。第一个反应通道通过无势垒缔合形成(C6H5)2NO(联苯氮氧化物),它可发生异构化和分解。第二个通道通过取代反应生成C12H10(联苯)和NO。第三个和第四个通道分别涉及直接氢提取反应,生成C6H4NO + C6H6和C6H5NOH + C6H4。利用微正则Rice - Ramsperger - Kassel - Marcus理论和/或变分过渡态理论,计算了上述四个产物通道在300 - 2000 K温度范围内的双分子速率常数。结果表明,在较低温度(T < 800 K)下主要反应是通道1,在较高温度(T > 800 K)下是通道3。预计在7 Torr He下,300 - 500 K时总速率常数为k(t) = 3.94 x 10(21) T(-3.09) exp(-699/T),500 - 1000 K时为2.09 x 10(20) T(-3.56) exp(2315/T),1000 - 2000 K时为1.51 x 10(2) T(3.30) exp(-3043/T)(单位为cm3 mol(-1) s(-1)),在报告误差范围内与实验数据合理吻合。估算了包括联苯氮氧化物、羟基苯基氨基自由基和N - 羟基咔唑在内的关键产物的生成热。

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