Wang Yuping, Wang Dunyou
College of Physics and Electronics, Shandong Normal University, Jinan 250014, Shandong, China.
Phys Chem Chem Phys. 2019 Jul 10;21(27):14722-14727. doi: 10.1039/c9cp02706h.
We carried out a time-dependent, full dimensional, quantum dynamics wave-packet calculation to study the isotope effects for the OD + HBr and OD + DBr reactions. Reaction cross sections and rate constants for the OD + HBr (k2) and OD + DBr (k4) reactions are compared with the ones of OH + HBr (k1) and OH + DBr (k3). The comparisons of cross sections and rate constants show that OH/OD + HBr almost has the same reactivity, as does OH/OD + DBr. Nonetheless, the OH + HBr reaction still has the largest reactivity, then OD + HBr, OH + DBr, and OD + DBr has the smallest. Furthermore, the rate constants of OD + HBr/DBr reactions have a strong negative temperature dependence below 200 K and a nearly constant temperature dependence above 200 K, agreeing with the experimental results both qualitatively and quantitatively. Our calculated quantum primary kinetic isotope effects (k1/k3 = 1.56 and k2/k4 = 1.80) and secondary kinetic isotope effects (k1/k2 = 1.11 and k3/k4 = 1.29) are temperature independent, confirming the experimental measurements, and are in very good agreement with the experimental data.
我们进行了一个含时、全维的量子动力学波包计算,以研究OD + HBr和OD + DBr反应的同位素效应。将OD + HBr(k2)和OD + DBr(k4)反应的反应截面和速率常数与OH + HBr(k1)和OH + DBr(k3)反应的进行比较。截面和速率常数的比较表明,OH/OD + HBr的反应活性几乎相同,OH/OD + DBr也是如此。尽管如此,OH + HBr反应的反应活性仍然最大,其次是OD + HBr、OH + DBr,而OD + DBr最小。此外,OD + HBr/DBr反应的速率常数在200 K以下具有很强的负温度依赖性,在200 K以上具有近乎恒定的温度依赖性,在定性和定量上均与实验结果相符。我们计算得到的量子一级动力学同位素效应(k1/k3 = 1.56和k2/k4 = 1.80)和二级动力学同位素效应(k1/k2 = 1.11和k3/k4 = 1.29)与温度无关,证实了实验测量结果,并且与实验数据非常吻合。