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首页> 外文期刊>The Journal of Chemical Physics >Electronic state spectroscopy of diiodomethane (CH_2I_2): Experimental and computational studies in the 30 000-95 000 cm~(-1) region
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Electronic state spectroscopy of diiodomethane (CH_2I_2): Experimental and computational studies in the 30 000-95 000 cm~(-1) region

机译:二碘甲烷(CH_2I_2)的电子状态光谱:在30 000-95 000 cm〜(-1)区域的实验和计算研究

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The electronic absorption spectrum of diiodomethane in the 30 000-95 000 cm~(-1) region is investigated using synchrotron radiation; the spectrum in the 50 000-66 500 cm~(-1) region is reported for the first time. The absorption bands in the 30 000-50 000 cm~(-1) region are attributed to valence transitions, while the vacuum ultraviolet (VUV) spectrum (50 000-95 000 cm~(-1)) is dominated by several Rydberg series converging to the first four ionization potentials of CH_2I_2 at 9.46, 9.76, 10.21, and 10.56 eV corresponding to the removal of an electron from the outermost 3b_2, 2b_1, 1a_2, and 4a_1 non-bonding orbitals, respectively. Rydberg series of ns, np, and nd type converging to each of the four ionization potentials are assigned based on a quantum defect analysis. Time dependent density functional theory calculations of excited states support the analysis and help in interpretation of the Rydberg and valence nature of observed transitions. Density functional theory calculations of the neutral and ionic ground state geometries and vibrational frequencies are used to assign the observed vibronic structure. Vibronic features accompanying the Rydberg series are mainly due to excitation of the C-I symmetric stretch (ν_3) and CH_2 wag (ν_8) modes, with smaller contributions from the C-H symmetric stretch (ν_1). UV absorption bands are assigned to low lying valence states 1~1B_2, 1~1B_1, 2~1A_1, 3~1A_1, 2~1B_1, and 2~1B_2 and the unusually high underlying intensity in parts of the VUV spectrum is attributed to valence states with high oscillator strength. This is the first report of a comprehensive Rydberg series and vibronic analysis of the VUV absorption spectrum of CH_2I_2 in the 50 000-85 000 cm~(-1) region. The VUV absorption spectrum of CD_2I_2 which serves to verify and consolidate spectral assignments is also reported here for the first time.
机译:利用同步加速器辐射研究了在30 000-95 000 cm〜(-1)范围内二碘甲烷的电子吸收光谱。首次报道了在50 000-66 500 cm〜(-1)区域的光谱。在30000-50 000 cm〜(-1)区域的吸收带归因于价态跃迁,而真空紫外(VUV)光谱(50000-95 000 cm〜(-1))由几个Rydberg系列控制分别在9.46、9.76、10.21和10.56 eV处收敛到CH_2I_2的前四个电离势,分别对应于从最外面的3b_2、2b_1、1a_2和4a_1非键合轨道上除去电子。基于量子缺陷分析,分配了收敛到四个电离电势中的每一个的ns,np和nd类型的Rydberg级数。激发态的时变密度泛函理论计算为分析提供了支持,并有助于解释观察到的跃迁的里德伯格和化合价性质。中性和离子基态几何形状和振动频率的密度泛函理论计算用于指定观察到的振动子结构。 Rydberg系列的振动特征主要是由于激发了C-I对称拉伸(ν_3)和CH_2 wag(ν_8)模式,而C-H对称拉伸(ν_1)贡献较小。紫外线吸收带被分配给低价态1〜1B_2、1〜1B_1、2〜1A_1、3〜1A_1、2〜1B_1和2〜1B_2,并且部分VUV光谱中异常高的潜在强度归因于价态高振荡器强度的状态。这是全面的Rydberg级数和对50 000-85 000 cm〜(-1)地区CH_2I_2的VUV吸收光谱进行振动分析的第一份报告。 CD_2I_2的VUV吸收光谱用于验证和巩固光谱分配,这也是首次报道。

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