Department of Chemistry, University of Illinois, Urbana, Illinois 61801, USA.
J Chem Phys. 2011 May 21;134(19):194311. doi: 10.1063/1.3587246.
The nuclear spin dependence of the chemical reaction H(3)(+)+ H(2) → H(2) + H(3)(+) has been studied in a hollow cathode plasma cell. Multipass infrared direct absorption spectroscopy has been employed to monitor the populations of several low-energy rotational levels of ortho- and para-H(3)(+) (o-H(3)(+) and p-H(3)(+)) in hydrogenic plasmas of varying para-H(2) (p-H(2)) enrichment. The ratio of the rates of the proton hop (k(H)) and hydrogen exchange (k(E)) reactions α ≡ k(H)/k(E) is inferred from the observed p-H(3)(+) fraction as a function of p-H(2) fraction using steady-state chemical models. Measurements have been performed both in uncooled (T(kin) ∼ 350 K) and in liquid-nitrogen-cooled (T(kin) ∼ 135 K) plasmas, marking the first time this reaction has been studied at low temperature. The value of α has been found to decrease from 1.6 ± 0.1 at 350 K to 0.5 ± 0.1 at 135 K.
已经在空心阴极等离子体室中研究了化学反应 H(3)(+) + H(2) → H(2) + H(3)(+) 的核自旋依赖性。采用多通红外直接吸收光谱法监测了不同氘化氢(p-H(2))富集度的类氢离子等离子体中 ortho-H(3)(+) (o-H(3)(+))和 para-H(3)(+) (p-H(3)(+))的几个低能转动能级的布居数。质子跳跃(k(H))和氢交换(k(E))反应的速率比α≡k(H)/k(E)可以从观察到的 p-H(3)(+)分数与 p-H(2)分数的函数关系中推断出来,这是使用稳态化学模型实现的。在未冷却(T(kin)∼350 K)和液氮冷却(T(kin)∼135 K)的等离子体中进行了测量,这标志着该反应首次在低温下进行了研究。发现α的值从 350 K 时的 1.6 ± 0.1 降低到 135 K 时的 0.5 ± 0.1。