Popolan-Vaida Denisia M, Wilson Kevin R, Leone Stephen R
Chemical Sciences Division, Lawrence Berkeley National Laboratory , Berkeley, California 94720, United States.
J Phys Chem A. 2014 Nov 13;118(45):10688-98. doi: 10.1021/jp5085247. Epub 2014 Nov 4.
The gas-phase reaction of iodine atoms with hydrocarbon molecules is energetically unfavorable, and there is no direct evidence for iodinated product formation by either H abstraction or I addition reactions at ambient temperature. Here we consider the possible heterogeneous reaction of I atoms with submicrometer droplets composed of a saturated alkane, squalane (Sq), and an unsaturated alkene, squalene (Sqe). The investigations are performed in an atmospheric pressure photochemical flow tube reactor in conjunction with a vacuum ultraviolet photoionization aerosol mass spectrometer and a scanning mobility particle sizer. Squalane, a branched alkane, is unreactive toward I atoms within the signal-to-noise, and an upper limit of the effective reactive uptake coefficient is estimated to be γI(Sq) ≤ 8.58 × 10(–7). In contrast, the reaction of I atoms with unsaturated submicrometer squalene droplets results in observable iodinated squalene products. The effective reactive uptake coefficient of I atom with squalene particles is determined to be γI(Sqe) = (1.20 ± 0.52) × 10(–4) at an average I concentration of 1.5 × 10(14) molecules·cm(–3).
碘原子与烃类分子的气相反应在能量上是不利的,并且在环境温度下,没有直接证据表明通过氢原子夺取或碘加成反应形成了碘化产物。在此,我们考虑碘原子与由饱和烷烃角鲨烷(Sq)和不饱和烯烃角鲨烯(Sqe)组成的亚微米液滴之间可能发生的非均相反应。研究是在大气压光化学流动管反应器中结合真空紫外光电离气溶胶质谱仪和扫描迁移率粒径分析仪进行的。支链烷烃角鲨烷在信噪比范围内对碘原子无反应性,有效反应吸收系数的上限估计为γI(Sq) ≤ 8.58 × 10(–7)。相比之下,碘原子与不饱和亚微米角鲨烯液滴的反应会产生可观测到的碘化角鲨烯产物。在平均碘浓度为1.5 × 10(14) 分子·cm(–3) 时,碘原子与角鲨烯颗粒的有效反应吸收系数确定为γI(Sqe) = (1.20 ± 0.52) × 10(–4)。