Halfen D T, Ziurys L M, Brown John M
Department of Chemistry, Arizona Radio Observatory, University of Arizona, 933 N. Cherry Avenue, Tucson, Arizona 85721, USA.
J Chem Phys. 2009 Apr 28;130(16):164301. doi: 10.1063/1.3108538.
The pure rotational spectrum of the VCl radical in its (5)Delta(r) ground state has been recorded in the range 236-417 GHz using millimeter/submillimeter direct absorption techniques. This species was created in an ac discharge of VCl(4) and argon. Ten rotational transitions of V(35)Cl were measured in all five Omega ladders; an additional nine transitions of the Omega=1 spin state were recorded in order to evaluate the (51)V hyperfine structure. Hyperfine interactions associated with the (35)Cl nucleus were not resolved, consistent with the ionic structure of the molecule. Because of extensive perturbations caused by the low-lying A (5)Pi(r) excited state, the rotational spectrum of the ground state has been found to be quite irregular. The four lowest Omega ladders exhibit unusually large lambda-doubling interactions, with the Omega=1 component showing the largest splitting, over 2 GHz in magnitude. The Omega=1 transitions are also shifted to higher frequency relative to the other spin components. In addition, the hyperfine structure varies widely between the Omega ladders, and an avoided crossing is observed in two transitions of both the Omega=1e and 2e components. The data have been analyzed with a case (c) Hamiltonian, and effective rotational, lambda-doubling, and hyperfine constants have been determined for V(35)Cl. Higher-order parity-dependent magnetic hyperfine terms d(Delta2) and d(Delta3) were required in the analysis, derived from perturbation theory, in addition to the usual d(Delta) parameter. The local perturbations evident in these spectra indicate that the A (5)Pi(r) excited state lies within the spin-orbit manifold of the ground state, well below the predicted value of 517 cm(-1). Mixing of the A (5)Pi(r) and X (5)Delta(r) states apparently causes both local and global perturbations in the ground state spectrum.
利用毫米/亚毫米直接吸收技术,在236 - 417GHz范围内记录了处于(5)Δ(r)基态的VCl自由基的纯转动光谱。该物种是在VCl₄和氩气的交流放电中产生的。在所有五个Ω能级中测量了V³⁵Cl的十个转动跃迁;另外记录了Ω = 1自旋态的九个跃迁,以评估(⁵¹)V超精细结构。与³⁵Cl核相关的超精细相互作用未被分辨出来,这与分子的离子结构一致。由于低能级A(5)Π(r)激发态引起的广泛微扰,发现基态的转动光谱相当不规则。四个最低的Ω能级表现出异常大的λ加倍相互作用,其中Ω = 1分量的分裂最大,幅度超过2GHz。Ω = 1跃迁相对于其他自旋分量也向更高频率移动。此外,超精细结构在Ω能级之间变化很大,并且在Ω = 1e和2e分量的两个跃迁中都观察到了避免交叉。已使用情况(c)哈密顿量对数据进行了分析,并确定了V³⁵Cl的有效转动、λ加倍和超精细常数。除了通常的d(Δ)参数外,分析中还需要从微扰理论导出的高阶宇称相关磁超精细项d(Δ₂)和d(Δ₃)。这些光谱中明显的局部微扰表明,A(5)Π(r)激发态位于基态的自旋轨道流形内,远低于预测值517cm⁻¹。A(5)Π(r)和X(5)Δ(r)态的混合显然在基态光谱中引起了局部和全局微扰。