Yuan Dao-Fu, Zhang Yue-Rou, Qian Chen-Hui, Zhu Guo-Zhu, Wang Lai-Sheng
Department of Chemistry, Brown University, Providence, Rhode Island 02912, United States.
Precis Chem. 2023 Feb 15;1(3):161-174. doi: 10.1021/prechem.2c00012. eCollection 2023 May 22.
Valence-bound molecular anions with polar neutral cores (μ > 2.5 D) can support highly diffuse dipole-bound states (DBSs) as electronically excited states just below the detachment threshold. Such weakly bound nonvalence excited states have little influence on the structure of the neutral core, and they usually have the same vibrational frequencies. DBSs can be systematically searched using photodetachment spectroscopy (PDS), which can yield the binding energies of the DBSs, the electron detachment threshold of the anion, and above-threshold vibrational levels of the DBSs (Feshbach resonances). We have shown that the combination of PDS and resonant photoelectron spectroscopy (rPES) at the Feshbach resonances is a powerful approach to obtain rich vibrational information for complex molecular radicals. A prerequisite for this technique is to produce vibrationally cold anions, made possible by a cryogenically controlled Paul trap. In this article, we report a PDS and rPES study of cold -ethylphenolate anions (-EP). The electron affinity of the -EP radical is measured to be 17425 ± 3 cm (2.1604 ± 0.0004 eV), and a DBS is found at 145 cm below the detachment threshold of -EP. Thirty-four vibrational levels are observed for the DBS, including two bound levels and 32 Feshbach resonances. Frequencies for 17 vibrational modes of the -EP radical are measured from the combination of PDS and rPES, including six symmetry-forbidden modes with A″ symmetry. The current study confirms again the power of combining cryogenic ion cooling with PDS and high-resolution rPES to obtain spectroscopic information on complex molecular radicals.
具有极性中性核(μ > 2.5 D)的价态束缚分子阴离子能够支持高度弥散的偶极束缚态(DBSs),作为略低于离解阈值的电子激发态。这种弱束缚的非价激发态对中性核的结构影响很小,并且它们通常具有相同的振动频率。可以使用光离解光谱法(PDS)系统地搜寻DBSs,该方法能够给出DBSs的结合能、阴离子的电子离解阈值以及DBSs的阈上振动能级(费什巴赫共振)。我们已经表明,在费什巴赫共振处将PDS与共振光电子能谱(rPES)相结合,是获取复杂分子自由基丰富振动信息的有力方法。该技术的一个前提条件是产生振动冷却的阴离子,这通过低温控制的保罗阱得以实现。在本文中,我们报告了对冷的乙基苯酚根阴离子(-EP)的PDS和rPES研究。测得-EP自由基的电子亲和能为17425 ± 3 cm⁻¹(2.1604 ± 0.0004 eV),并且在-EP的离解阈值以下145 cm处发现了一个DBS。观察到该DBS有34个振动能级,包括两个束缚能级和32个费什巴赫共振。通过PDS和rPES的结合测量了-EP自由基17种振动模式的频率,包括6种具有A″对称性的对称禁戒模式。当前的研究再次证实了将低温离子冷却与PDS和高分辨率rPES相结合以获取复杂分子自由基光谱信息的强大能力。