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重氮甲烷电子里德堡态的理论与实验研究:能级归属与态间相互作用

Theoretical and experimental investigations of the electronic Rydberg states of diazomethane: assignments and state interactions.

作者信息

Fedorov Igor, Koziol Lucas, Li Guosheng, Parr Jessica A, Krylov Anna I, Reisler Hanna

机构信息

Department of Chemistry, University of Southern California, Los Angeles, California 90089-0482, USA.

出版信息

J Phys Chem A. 2007 May 31;111(21):4557-66. doi: 10.1021/jp071590r. Epub 2007 May 5.

Abstract

The electronic states of diazomethane in the region 3.00-8.00 eV have been characterized by ab initio calculations, and electronic transitions in the region 6.32-7.30 eV have been examined experimentally using a combination of 2 + 1 REMPI spectroscopy and photoelectron imaging in a molecular beam. In the examined region, three Rydberg states of 3p character contribute to the transitions, 2(1)A2(3p(y) <-- pi), 2(1)B1(3p(z) <-- pi), and 3(1)A1(3p(x) <-- pi). The former two states are of mostly pure Rydberg character and exhibit a resolved K structure, whereas the 3(1)A1(3p(x) <-- pi) state is mixed with the valence 2(1)A1(pi* <-- pi) state, which is unbound and is strongly predissociative. Analyses of photoelectron kinetic energy distributions indicate that the ground vibrational level of the 2(1)B1(3p(z)) state is mixed with the 2(1)A2(3p(y)) nu(9) level, which is of B1 vibronic symmetry. The other 2(1)A2(3p(y)) vibronic states exhibit pure Rydberg character, generating ions in single vibrational levels. The photoelectron spectra of the 3(1)A1(3p(x) <-- pi) state, on the other hand, give rise to many states of the ion as a result of strong mixing with the valence state, as evidenced also in the ab initio calculations. The equilibrium geometries of the electronic states of neutral diazomethane were calculated by CCSD(T), using the cc-pVTZ basis, and by B3LYP, using the 6-311G(2df,p) basis. Geometry and frequencies of the ground state of the cation were calculated by CCSD(T)/cc-pVTZ, using the unrestricted (UHF) reference. Vertical excitation energies were calculated using EOM-CCSD/6-311(3+,+)G* at the B3LYP optimized geometry. The theoretical results show that the 2(1)A2(3p(y) <-- pi) and 2(1)B1(3p(z) <-- pi) states have geometries similar to the ion, which has C(2v) symmetry, with slight differences due to the interactions of the electron in the 3p orbital with the nuclei charge distributions. The geometry of the 3(1)A1(3p(x) <-- pi) state is quite different and has Cs symmetry. The experimental and theoretical results agree very well, both in regard to excitation energies and to vibrational modes of the ion.

摘要

通过从头算计算对重氮甲烷在3.00 - 8.00电子伏特区域的电子态进行了表征,并结合2 + 1共振增强多光子电离光谱和分子束中的光电子成像实验研究了6.32 - 7.30电子伏特区域的电子跃迁。在所研究的区域中,三个具有3p特征的里德堡态对跃迁有贡献,分别是2(1)A2(3p(y) ← π)、2(1)B1(3p(z) ← π)和3(1)A1(3p(x) ← π)。前两个态主要具有纯里德堡特征,并呈现出分辨的K结构,而3(1)A1(3p(x) ← π)态与价态2(1)A1(π* ← π)混合,该价态是未束缚的且强烈预解离。光电子动能分布分析表明,2(1)B1(3p(z))态的基振动态与具有B1振动对称性的2(1)A2(3p(y)) ν(9)能级混合。其他2(1)A2(3p(y))振动态具有纯里德堡特征,在单个振动态中产生离子。另一方面,3(1)A1(3p(x) ← π)态的光电子能谱由于与价态的强烈混合而产生了许多离子态,这在从头算计算中也得到了证实。使用cc - pVTZ基组通过CCSD(T)以及使用6 - 311G(2df,p)基组通过B3LYP计算了中性重氮甲烷电子态的平衡几何结构。使用无限制(UHF)参考通过CCSD(T)/cc - pVTZ计算了阳离子基态的几何结构和频率。在B3LYP优化的几何结构下使用EOM - CCSD/6 - 311(3 +,+)G*计算垂直激发能。理论结果表明,2(1)A2(3p(y) ← π)和2(1)B1(3p(z) ← π)态的几何结构与具有C(2v)对称性的离子相似,由于3p轨道中的电子与核电荷分布的相互作用存在细微差异。3(1)A1(3p(x) ← π)态的几何结构则有很大不同,具有Cs对称性。实验和理论结果在激发能和离子的振动模式方面都非常吻合。

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