Xie Yurun, Wang Yufeng, Wang Wei, Dai Dongxu, Sun Zhigang, Xiao Chunlei, Yang Xueming
Shanghai Advanced Research Institute , Chinese Academy of Sciences , Shanghai 201210 , China.
State Key Laboratory of Molecular Reaction Dynamics, Dalian Institute of Chemical Physics , Chinese Academy of Sciences , Dalian , Liaoning 116023 , China.
J Phys Chem A. 2020 Feb 20;124(7):1266-1271. doi: 10.1021/acs.jpca.9b10981. Epub 2020 Feb 11.
Vibrationally excited reaction of Cl + D ( = 1, = 0) → DCl + D was investigated by a high-resolution crossed beam experiment, with D molecules in the vibrationally excited state prepared by the scheme of stimulated Raman pumping. Differential cross sections (DCSs) were obtained at three collision energies of 4.03, 4.93, and 5.68 kcal/mol. Backward scattering is dominant for both DCl (' = 0) and DCl (' = 1) products, and no forward scattering signal was observed at these three collision energies. Collision-energy-dependent DCS in the backward scattering direction was measured at collision energies between 3.62 and 5.97 kcal/mol. Comparing with the DCSs from the vibrational ground state, it is found that the vibrational excitation of D molecules significantly enhances the reactivity because of the later barrier nature of the reaction. No obvious oscillatory structure was found in the collision-energy-dependent DCS in the backward scattering direction, suggesting that the title reaction proceeds via a direct abstraction mechanism.
通过高分辨率交叉束实验研究了Cl + D(v = 1,J = 0)→ DCl + D的振动激发反应,其中处于振动激发态的D分子是通过受激拉曼泵浦方案制备的。在4.03、4.93和5.68 kcal/mol这三个碰撞能量下获得了微分截面(DCS)。对于DCl(J' = 0)和DCl(J' = 1)产物,向后散射均占主导,并且在这三个碰撞能量下未观察到向前散射信号。在3.62至5.97 kcal/mol的碰撞能量范围内测量了向后散射方向上与碰撞能量相关的DCS。与来自振动基态的DCS相比,发现由于反应的后期势垒性质,D分子的振动激发显著增强了反应活性。在向后散射方向上与碰撞能量相关的DCS中未发现明显的振荡结构,这表明该标题反应通过直接提取机制进行。