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氯原子与三键分子的反应活性。醇类的实验与理论研究。

Reactivity of Cl atom with triple-bonded molecules. An experimental and theoretical study with alcohols.

作者信息

Alwe H D, Sharma A, Walavalkar M P, Dhanya S, Naik P D

机构信息

Radiation & Photochemistry Division, Bhabha Atomic Research Centre , Trombay, Mumbai, India 400 085.

出版信息

J Phys Chem A. 2014 Sep 11;118(36):7695-706. doi: 10.1021/jp5050783. Epub 2014 Aug 29.

Abstract

The reactivities of the Cl atom with triple-bonded molecules were examined by determining the rate coefficients of reactions of four triple-bonded alcohols (TA), namely, 2-propyn-1-ol, 3-butyn-1-ol, 3-butyn-2-ol, and 2-methyl-3-butyn-2-ol, using the relative rate method, at 298 K. The rate coefficients (k) of reaction of the four alcohols with Cl vary in the range (3.5-4.3) × 10(-10) cm(3) molecule(-1) s(-1). These values imply significant contribution of the Cl reaction in the tropospheric degradation of TAs in the conditions of the marine boundary layer. A striking difference is observed in the reactivity trend of Cl from that of OH/O3. Although the reactivity of OH/O3 is lower with triple-bonded molecules, as compared to the double-bonded analogues, the reactivity of the Cl atom is similar for both. For a deeper insight, the reactions of Cl and OH with the simplest TA, 2-propyn-1-ol, are investigated theoretically. Conventional transition state theory is applied to compute the values of k, using the calculated energies at QCISD and QCISD(T) levels of theory of the optimized geometries of the reactants, transition states (TS), and the product radicals of all the possible reaction pathways at the MP2/6-311++G(d,p) level. The k values calculated at the QCISD level for Cl and the QCISD(T) level for OH reactions are found to be very close to the experimental values at 298 K. In the case of the Cl reaction, the abstraction of α-H atoms as well as the addition at the terminal and middle carbon atoms have submerged TS and the contribution of the abstraction reaction is found to be significant at room temperature, at all levels of calculations. Addition at the terminal carbon atom is prominent compared to that at the middle carbon. In contrast to the Cl reaction, only addition at the middle carbon is associated with such low lying TS in the case of OH. The individual rate coefficients of addition and abstraction of OH are lower than that of Cl. The negative temperature dependence of the computed rate coefficients in the temperature range 200-400 K shows that the difference in the TS energy of Cl and OH affects the pre-exponential factor more than the activation energy.

摘要

通过使用相对速率法,在298 K下测定四种含三键的醇(TA),即2-丙炔-1-醇、3-丁炔-1-醇、3-丁炔-2-醇和2-甲基-3-丁炔-2-醇的反应速率系数,研究了氯原子与含三键分子的反应活性。这四种醇与氯反应的速率系数(k)在(3.5 - 4.3)×10⁻¹⁰ cm³·分子⁻¹·s⁻¹范围内变化。这些值表明在海洋边界层条件下,氯反应在TA的对流层降解中起重要作用。观察到氯的反应活性趋势与OH/O₃的有显著差异。尽管与含双键类似物相比,OH/O₃与含三键分子的反应活性较低,但氯原子对两者的反应活性相似。为了更深入了解,从理论上研究了氯和OH与最简单的TA,即2-丙炔-1-醇的反应。应用传统过渡态理论,使用在MP2/6 - 311++G(d,p)水平下反应物、过渡态(TS)和所有可能反应途径的产物自由基的优化几何结构在QCISD和QCISD(T)理论水平下计算的能量来计算k值。发现在298 K下,氯反应在QCISD水平和OH反应在QCISD(T)水平计算得到的k值与实验值非常接近。在氯反应的情况下,α-H原子的夺取以及在末端和中间碳原子上的加成都有淹没的过渡态,并且在所有计算水平下,夺取反应在室温下的贡献都很显著。与在中间碳原子上的加成相比,在末端碳原子上的加成更突出。与氯反应相反,在OH反应的情况下,只有在中间碳原子上的加成与如此低能量的过渡态相关。OH加成和夺取的个别速率系数低于氯的。在200 - 400 K温度范围内计算得到的速率系数的负温度依赖性表明,氯和OH的过渡态能量差异对指前因子的影响大于对活化能的影响。

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