首页> 外文期刊>The Journal of Chemical Physics >Differential steric effects in Cl reactions with aligned CHD3(v(1)=1) by the R(0) and Q(1) transitions. I. Attacking the excited C-H bond
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Differential steric effects in Cl reactions with aligned CHD3(v(1)=1) by the R(0) and Q(1) transitions. I. Attacking the excited C-H bond

机译:通过R(0)和Q(1)转变对准CHD3(V(1)= 1)的Cl反应中的差分空间效应。 I.攻击兴奋的C-H债券

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When a CHD3 molecule is pumped to the C-H stretching-excited state by absorbing a linearly polarized infrared (IR) photon via the R(0) branch of the v(1) = 1 <- 0 transition, the rotational angular momentum j of the prepared state vertical bar jK > = vertical bar 10 > preferentially lies in a plane perpendicular to the IR polarization axis epsilon(IR). By way of contrast, when the Q(1) branch is used, the state of vertical bar jK > = vertical bar 1 +/- 1 > is prepared with j aligned along the direction of epsilon(IR). Reported here is a detailed study of the title reaction by actively controlling the collision geometries under these two IR-excitation schemes at collision energy E-c = 8.6 kcal mol(-1), using a crossed molecular beam, product imaging approach. We found that under the R(0) excitation, the polarization-dependent differential cross sections for the HCl(v = 0) + CD3(0(0)) channel can largely be understood by invoking dual reaction mechanisms. The forward-scattered products are most likely mediated by a time-delayed resonance mechanism-as the formation of the HCl(v = 1) + CD3(0(0)) channel, whereas the backward/sideways scattered products are governed by a direct abstraction mechanism. Compared to the previous results at lower E-c of 3.8 kcal mol(-1), the sighting of opening-up the attack angle at the transition state of the direct pathway is proposed. Results under the Q(1) excitation are, however, perplexing and bear no obvious correlation to the corresponding ones for the R(0) excitation, defying simple intuitive interpretation. Possible reasons are put forward, which call for theoretical investigations for deeper insights. The results on the alternative isotope channel, DCl + CHD2, will be reported in the following paper. Published by AIP Publishing.
机译:当CHD3分子被泵送到CH经由V的R(0)分支的吸收线性偏振红外(IR)光子拉伸励磁状态(1)= 1 < - 0过渡,的转动角动量Ĵ准备状态竖线JK> =垂直条10>优先位于一个平面内垂直于所述IR偏振轴的ε-(IR)。通过对比,当使用Q(1)个分支,竖条JK> =垂直条1 +/- 1>的状态为j沿着小量的(IR)的方向对齐制备。这里报告是通过在碰撞能量E-C = 8.6千卡摩尔(-1)主动地控制这两个IR-激励方案下的碰撞几何形状,使用交叉分子束,产物成像的方法的标题反应进行了详细研究。我们发现,R(0)的激发下,对于盐酸的偏振相关微分截面(V = 0)+ CD3(0(0))的信道可以在很大程度上通过调用双重反应机理的理解。前向散射产品是由一个时间延迟的共振机构,为HCl的形成(V = 1)+ CD3(0(0))信道最可能介导的,而向后/侧向散射产品通过直接管辖抽象机制。相比在3.8千卡mol的低E-C之前的结果(-1),对外开放的迎角在直接通路的过渡状态的瞄准建议。的Q(1)激发下的结果,然而,令人困惑并承担没有明显的相关性相应的那些为R(0)的激发,违抗简单直观的解释。可能的原因是,提出,为获得更深入的理论研究的呼叫。在替代的同位素信道时,DCL + CHD2,结果将在下面的纸张进行报告。通过AIP发布发布。

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