Midey Anthony, Dotan Itzhak, Viggiano A A
Air Force Research Laboratory, Space Vehicles Directorate, 29 Randolph Road, Hanscom Air Force Base, Massachusetts 01731-3010, USA.
J Phys Chem A. 2008 Apr 10;112(14):3040-5. doi: 10.1021/jp710539s. Epub 2008 Mar 11.
Rate constants and product ion distributions for the O- and O2- reactions with O2(a 1Deltag) were measured as a function of temperature from 200 to 700 K. The measurements were made in a selected ion flow tube (SIFT) using a newly calibrated O2(a 1Deltag) emission detection scheme with a chemical singlet oxygen generator. The rate constant for the O2- reaction is approximately 7 x 10(-10) cm3 s-1 at all temperatures, approaching the Langevin collision rate constant. Electron detachment was the only product observed with O2-. The O- reaction shows a positive temperature dependence in the rate constant from 200 to 700 K. The product branching ratios show that almost all of the products at 200 K are electron detachment, with an increasing contribution from the slightly endothermic charge-transfer channel up to 700 K, accounting for 75% of the products at that temperature. The increase in the overall rate constant can be attributed to this increase in the contribution the endothermic channel. The charge-transfer product channel rate constant follows the Arrhenius form, and the detachment product channel rate constant is essentially independent of temperature with a value of approximately 6.1 x 10(-11) cm3 s-1.
测量了O和O₂⁻与O₂(a¹Δg)反应的速率常数及产物离子分布随温度在200至700 K范围内的变化情况。这些测量是在一个选定离子流管(SIFT)中进行的,采用了一种新校准的O₂(a¹Δg)发射检测方案以及一个化学单重态氧发生器。在所有温度下,O₂⁻反应的速率常数约为7×10⁻¹⁰ cm³ s⁻¹,接近朗之万碰撞速率常数。观察到O₂⁻的唯一产物是电子脱离。O反应的速率常数在200至700 K范围内呈现正的温度依赖性。产物分支比表明,在200 K时几乎所有产物都是电子脱离,随着温度升高到700 K,稍吸热的电荷转移通道的贡献增加,在该温度下占产物的75%。总速率常数的增加可归因于吸热通道贡献的增加。电荷转移产物通道速率常数符合阿仑尼乌斯形式,而脱离产物通道速率常数基本上与温度无关,其值约为6.1×10⁻¹¹ cm³ s⁻¹。