论文标题

NH2与甲醛(CH2O)的气相反应不是星际环境中甲酰胺(NH2CHO)的来源

The gas-phase reaction of NH2 with formaldehyde (CH2O) is not a source of formamide (NH2CHO) in interstellar environments

论文作者

Douglas, Kevin M., Lucas, Daniel, Walsh, Catherine, West, Niclas A., Blitz, Mark A., Heard, Dwayne E.

论文摘要

已经进行了NH2与甲醛(CH2O)的气相反应的低温动力学的首次实验研究。以前,该反应被认为是星际环境中甲酰胺(NH2CHO)的来源。配备有激光闪烁光解和激光诱导的荧光光谱的脉冲LAVAL喷嘴用于在CH2O存在下创建和监测NH2的暂时衰变。无法通过与CH2O反应观察到NH2的损失,我们对34K处的速率系数<6x10-12 cm3 Molecule-1 S-1放置上限。将势能表面的摘要计算与RRKM计算结合使用,以预测35K处的6.2x10-14 cm3分子-1 S-1的速率系数,这与实验结果一致。对于形成甲酰胺作为产物的显着屏障,即18 kJ mol-1的存在意味着只有产生NH3 + CHO的H抗震动通道,其中H原子的转移可以通过在低温下通过23 KJ Mol-1屏障的量子机械隧穿来进行量子机械隧穿。这些结果与最近的一项理论研究相反,该研究表明该反应可以在没有障碍的情况下进行,因此是通往气相甲酰胺形成的可行途径。计算出的速率系数用于一个天体化学模型中,该模型表明该反应在星际和星际条件下仅产生可忽略的气相甲酰胺。因此,在星际环境中低温下,NH2与CH2O的反应并不是甲酰胺的重要来源。

The first experimental study of the low-temperature kinetics of the gas-phase reaction of NH2 with formaldehyde (CH2O) has been performed. This reaction has previously been suggested as a source of formamide (NH2CHO) in interstellar environments. A pulsed Laval nozzle equipped with laser-flash photolysis and laser-induced fluorescence spectroscopy was used to create and monitor the temporal decay of NH2 in the presence of CH2O. No loss of NH2 could be observed via reaction with CH2O and we place an upper-limit on the rate coefficient of <6x10-12 cm3 molecule-1 s-1 at 34K. Ab initio calculations of the potential energy surface were combined with RRKM calculations to predict a rate coefficient of 6.2x10-14 cm3 molecule-1 s-1 at 35K, consistent with the experimental results. The presence of a significant barrier, 18 kJ mol-1, for the formation of formamide as a product, means that only the H-abstraction channel producing NH3 + CHO, in which the transfer of an H-atom can occur by quantum mechanical tunnelling through a 23 kJ mol-1 barrier, is open at low temperatures. These results are in contrast with a recent theoretical study which suggested that the reaction could proceed without a barrier and was therefore a viable route to gas-phase formamide formation. The calculated rate coefficients were used in an astrochemical model which demonstrated that this reaction produces only negligible amounts of gas-phase formamide under interstellar and circumstellar conditions. The reaction of NH2 with CH2O is therefore not an important source of formamide at low temperatures in interstellar environments.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源