Markus Charles R, Asvany Oskar, Salomon Thomas, Schmid Philipp C, Brünken Sandra, Lipparini Filippo, Gauss Jürgen, Schlemmer Stephan
I. Physikalisches Institut, Universität zu Köln, Zülpicher Str. 77, D-50937 Köln, Germany.
University of Illinois, Department of Chemistry, Urbana, Illinois 61801, USA.
Phys Rev Lett. 2020 Jun 12;124(23):233401. doi: 10.1103/PhysRevLett.124.233401.
Experiments within a cryogenic 22-pole ion trap have revealed an interesting reaction dynamic phenomenon, where rovibrational excitation of an ionic molecule slows down a reaction with a neutral partner. This is demonstrated for the low-temperature hydrogen abstraction reaction c-C_{3}H_{2}^{+}+H_{2}, where excitation of the ion into the ν_{7} antisymmetric C-H stretching mode decreased the reaction rate coefficient toward the products c-C_{3}H_{3}^{+}+H. Supported by high-level quantum-chemical calculations, this observation is explained by the reaction proceeding through a c-C_{3}H_{2}^{+}-H_{2} collision complex in the entrance channel, in which the hydrogen molecule is loosely bound to the hydrogen atom of the c-C_{3}H_{2}^{+} ion. This discovery enables high-resolution vibrational action spectroscopy for c-C_{3}H_{2}^{+} and other molecular ions with similar reaction pathways. Moreover, a detailed kinetic model relating the extent of the observed product depletion signal to the rate coefficients of inelastic collisions reveals that rotational relaxation of the vibrationally excited ions is significantly faster than the rovibrational relaxation, allowing for a large fraction of the ions to be vibrationally excited. This result provides fundamental insight into the mechanism for an important class of chemical reactions, and is capable of probing the inelastic collisional dynamics of molecular ions.
在低温22极离子阱中进行的实验揭示了一种有趣的反应动力学现象,即离子分子的振转激发会减缓其与中性伙伴的反应。这在低温氢提取反应c-C₃H₂⁺ + H₂中得到了证明,其中离子激发到ν₇反对称C-H伸缩模式会降低生成产物c-C₃H₃⁺ + H的反应速率系数。在高水平量子化学计算的支持下,这一观察结果的解释是,反应通过入口通道中的c-C₃H₂⁺-H₂碰撞复合物进行,其中氢分子与c-C₃H₂⁺离子的氢原子松散结合。这一发现使得能够对c-C₃H₂⁺和其他具有类似反应途径的分子离子进行高分辨率振动作用光谱分析。此外,一个将观察到的产物消耗信号程度与非弹性碰撞速率系数相关联的详细动力学模型表明,振动激发离子的转动弛豫明显快于振转弛豫,从而使得很大一部分离子能够被振动激发。这一结果为一类重要化学反应的机理提供了基本见解,并且能够探测分子离子的非弹性碰撞动力学。