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首页> 外文期刊>The Journal of Chemical Physics >Ionization of pyridine: Interplay of orbital relaxation and electron correlation
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Ionization of pyridine: Interplay of orbital relaxation and electron correlation

机译:吡啶的电离:轨道松弛和电子相关的相互作用

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The valence shell ionization spectrum of pyridine was studied using the third-order algebraic-diagrammatic construction approximation scheme for the one-particle Green's function and the outer-valence Green's function method. The results were used to interpret angle resolved photoelectron spectra recorded with synchrotron radiation in the photon energy range of 17-120 eV. The lowest four states of the pyridine radical cation, namely, (2)A(2)(1a(2)(-1)), (2)A(1)(7a(1)(-1)), B-2(1)(2b(1)(-1)), and B-2(2)(5b(2)(-1)), were studied in detail using various high-level electronic structure calculation methods. The vertical ionization energies were established using the equation-of-motion coupled-cluster approach with single, double, and triple excitations (EOM-IP-CCSDT) and the complete basis set extrapolation technique. Further interpretation of the electronic structure results was accomplished using Dyson orbitals, electron density difference plots, and a second-order perturbation theory treatment for the relaxation energy. Strong orbital relaxation and electron correlation effects were shown to accompany ionization of the 7a1 orbital, which formally represents the nonbonding sigma-type nitrogen lone-pair (n sigma) orbital. The theoretical work establishes the important roles of the pi-system (pi-pi* excitations) in the screening of the n sigma-hole and of the relaxation of the molecular orbitals in the formation of the 7a(1)(n sigma)(-1) state. Equilibrium geometric parameters were computed using the MP2 (second-order Moller-Plesset perturbation theory) and CCSD methods, and the harmonic vibrational frequencies were obtained at the MP2 level of theory for the lowest three cation states. The results were used to estimate the adiabatic 0-0 ionization energies, which were then compared to the available experimental and theoretical data. Photoelectron anisotropy parameters and photoionization partial cross sections, derived from the experimental spectra, were compared to pre
机译:使用三阶代数 - 示意性施工近似方案研究了吡啶的价壳电离谱,用于单粒子绿色的功能和外价绿色的功能方法。结果用于解释在17-120eV的光子能量范围内的同步辐射记录的角度分辨光电子光谱。吡啶自由基阳离子的最低四个状态,即(2)(2)(1a(2)(1a(2)( - 1)),(2)a(1)(7a(1)( - 1)),b-使用各种高水平电子结构计算方法详细研究了2(1)(2b(1)( - 1))和B-2(2)(5b(2)( - 1))。使用单一,双和三重激发(EOM-IP-CCSDT)和完整的基础设施外推技术,建立垂直电离能量。使用戴逊轨道,电子密度差异图来实现电子结构结果的进一步解释,以及用于松弛能量的二阶扰动理论处理。显示出强轨道松弛和电子相关效果伴随7A1轨道的电离,其正式表示非合并σ型氮气缸(N Sigma)轨道。理论上的工作建立了PI-System(PI-PI *激发)在筛选N Sigma-孔中的重要作用,以及在形成7a(1)(n sigma)的形成中的分子轨道松弛( -1)状态。使用MP2(二阶Moller-Plesbration理论)和CCSD方法计算平衡几何参数,并且在最低三个阳离子状态的MP2理论级别获得谐波振动频率。结果用于估计绝热0-0电离能量,然后与可用的实验和理论数据进行比较。与Prep相比,光电子能力参数和来自实验光谱的光相分横截面进行比较

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