McDonald Ii David C, Sweeny Brendan C, Viggiano Albert A, Shuman Nicholas S, Ard Shaun G
Institute for Scientific Research, Boston College, Boston, Massachusetts 02467, United States.
Space Vehicles Directorate, Air Force Research Laboratory, Kirtland Air Force Base, New Mexico 87117, United States.
J Phys Chem A. 2020 Oct 1;124(39):7966-7972. doi: 10.1021/acs.jpca.0c06960. Epub 2020 Sep 21.
The catalytic oxidation of CO by NO promoted by Co was studied as a function of temperature in a variable-ion source temperature-adjustable selected-ion flow tube (VISTA-SIFT). Each step of the cycle, Co + NO and CoO + CO was studied individually for unambiguous interpretation of the results. The rate constant of CoO + CO is (1.5 ± 0.4) × 10 × (/300 K) cm s is in disagreement with a previously reported upper limit of 10 cm s, with the discrepancy likely due to the earlier report having studied the reactions in tandem. The reaction of Co + NO produces CoO with a much smaller rate constant of 1.4 ± 0.4 × 10 cm s at 300 K. The association product, Co(NO), was also produced with a rate constant of 1.6 × 10 cm s. While the rate constant for termolecular association decreased with temperature in accordance with a decreasing time scale for stabilization, the production of CoO increased with temperature in a manner that is not well described by simple functional forms. Statistical modeling of calculated reaction coordinates was employed and the experimental data reproduced only by assuming an intersystem crossing to yield ground state CoO occurring competitively with the spin-allowed formation of excited state CoO.
在可变离子源温度可调的选择离子流动管(VISTA-SIFT)中,研究了钴促进的一氧化氮对一氧化碳的催化氧化反应,并将其作为温度的函数进行研究。为了对结果进行明确的解释,对循环的每一步,即钴与一氧化氮以及氧化钴与一氧化碳分别进行了研究。氧化钴与一氧化碳的速率常数为(1.5±0.4)×10×(/300 K) cm³ s⁻¹,这与先前报道的10 cm³ s⁻¹的上限不一致,差异可能是由于早期的报告是串联研究这些反应的。在300 K时,钴与一氧化氮反应生成氧化钴的速率常数要小得多,为1.4±0.4×10 cm³ s⁻¹。还生成了缔合产物Co(NO),其速率常数为1.6×10 cm³ s⁻¹。虽然三分子缔合的速率常数随着温度的降低而降低,这与稳定化时间尺度的减小一致,但氧化钴的生成随着温度的升高而增加,这种方式无法用简单的函数形式很好地描述。采用了计算反应坐标的统计模型,并且只有在假设发生系间窜越以产生基态氧化钴与自旋允许的激发态氧化钴形成竞争的情况下,才能重现实验数据。