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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Branching fractions of the CN + C_3H_6 reaction using synchrotron photoionization mass spectrometry: Evidence for the 3-cyanopropene product
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Branching fractions of the CN + C_3H_6 reaction using synchrotron photoionization mass spectrometry: Evidence for the 3-cyanopropene product

机译:使用同步加速器光电离质谱法分析CN + C_3H_6反应的支化级分:3-氰基丙烯产物的证据

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摘要

The gas-phase CN + propene reaction is investigated using synchrotron photoionization mass spectrometry (SPIMS) over the 9.8 - 11.5 eV photon energy range. Experiments are conducted at room temperature in 4 Torr of He buffer gas. The CN + propene addition reaction produces two distinct product mass channels, C_3H_3N and C_4H_5N, corresponding to CH_3 and H elimination, respectively. The CH_3 and H elimination channels are measured to have branching fractions of 0.59 ± 0.15 and 0.41 ± 0.10, respectively. The absolute photoionization cross sections between 9.8 and 11.5 eV are measured for the three considered H-elimination coproducts: 1-, 2-, and 3-cyanopropene. Based on fits using the experimentally measured photoionization spectra for the C_4H _5N mass channel and contrary to the previous study (Int. J. Mass. Spectrom.2009, 280, 113 - 118), where it was concluded that 3-cyanopropene was not a significant product, the new data suggests 3-cyanopropene is produced in significant quantity along with 1-cyanopropene, with isomer branching fractions from this mass channel of 0.50 ± 0.12 and 0.50 ± 0.24, respectively. However, similarities between the 1-, 2-, and 3-cyanopropene photoionization spectra make an unequivocal assignment difficult based solely on photoionization spectra. The CN + CH_2CHCD_3 reaction is studied and shows, in addition to the H-elimination product signal, a D-elimination product channel (m/z 69, consistent with CH_2CHCD _2CN), providing further evidence for the formation of the 3-cyanopropene reaction product.
机译:使用同步加速器光电离质谱(SPIMS)在9.8-11.5 eV光子能量范围内研究了气相CN +丙烯反应。实验是在室温下于4 Torr的He缓冲气体中进行的。 CN +丙烯加成反应产生两个不同的产物质量通道C_3H_3N和C_4H_5N,分别对应于CH_3和H的消除。 CH_3和H消除通道的支化分数分别为0.59±0.15和0.41±0.10。对于三种考虑的氢消除副产物:1-,2-和3-氰基丙烯,测量了在9.8和11.5 eV之间的绝对光电离截面。基于对C_4H _5N质量通道使用实验测得的光电离光谱进行的拟合,与先前的研究(Int。J. Mass。Spectrom.2009,280,113-118)相反,该研究得出的结论是3-氰基丙烯不是重要数据,新数据表明,与1-氰基丙烯一起大量生产3-氰基丙烯,该质量通道的异构体支化分数分别为0.50±0.12和0.50±0.24。但是,1-,2-和3-氰基丙烯光电离光谱之间的相似性使仅基于光电离光谱的明确分配变得困难。研究了CN + CH_2CHCD_3反应,除显示H消除产物信号外,还显示了D消除产物通道(m / z 69,与CH_2CHCD _2CN一致),为形成3-氰基丙烯反应提供了进一步的证据产品。

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