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关于NO2(+)离子电子态及氧损失光解离的理论研究

A theoretical study on the electronic states and O-loss photodissociation of the NO2(+) ion.

作者信息

Chang Hai-Bo, Huang Ming-Bao

机构信息

College of Chemistry and Chemical Engineering, Graduate University of Chinese Academy of Sciences, P.O. Box 4588, Beijing 100049, PR China.

出版信息

Chemphyschem. 2009 Feb 23;10(3):582-9. doi: 10.1002/cphc.200800626.

Abstract

CASPT2 (multiconfiguration second-order perturbation theory) calculations were performed at the molecular geometry for 17 low-lying singlet and triplet states of the NO(2)(+) ion. The CASPT2 vertical relative energies (T(v)') were obtained and the characters of these ionic states (primary or shake-up ionization states) were determined. For the eight low-lying states, we performed CASPT2 geometry optimization calculations and obtained the CASPT2 adiabatic relative energies (T(0)). We conclude that the 1(1)A(1), 1(3)B(2), 1(3)A(2), 1(1)A(2), 1(1)B(2), 1(3)A(1), 2(3)B(1), and 3(3)B(2) states of NO(2)(+) correspond to the X(1)Sigma(g)(+), a(3)B(2), b(3)A(2), A(1)A(2), B(1)B(2), c(3)A(1), d(3)B(1), and (3b(2))(-1) (3)B(2) states (the eight ionic states below 20 eV observed in the photoelectron spectra of Brundle et al.1 and Baltzer et al.2), respectively. The 1(1)A(1), 1(3)B(2), 1(3)A(2), 1(1)A(2), 1(1)B(2), 1(3)A(1), and 3(3)B(2) states are primary ionization states, and the CASPT2 T(v)' and T(0) values of these states are close to the corresponding experimental values from refs. [1] and [2]. The 2(3)B(1) state is not a typical primary ionization state, and the CASPT2 T(v)' and T(0) values for 2(3)B(1) are in reasonable agreement with the experimental values for d(3)B(1) from refs. [1] and [2] (the CASPT2 T(0) value for 1(3)B(1) is more than 2.5 eV smaller than the experimental values). Based on our CASPT2 T(0) calculations, we comment on the assignments of the d(3)A(1), C(1)B(1), and D(1)B(2) states below 20 eV observed by Jarvis et al. and on the MRCI T(0) values of Hirst for the 1(3)B(1), 1(1)B(1), and (3)A(1) states. On the basis of the CASPT2 potential energy curve (PEC) and CASSCF singlet/triplet minimum-energy crossing point (MECP) calculations, we reach the following conclusions concerning O-loss photodissociation from the X(1)Sigma(g)(+), a(3)B(2), b(3)A(2), A(1)A(2), and B(1)B(2) states, which are in line with the experimental facts. The adiabatic dissociation process of the X(1)Sigma(g) (+) state to the second limit [NO(+)(X(1)Sigma(+))+O((1)D)] cannot occur due to a high energy barrier (>5.0 eV) along the PEC, and the nonadiabitic process of X(1)Sigma(g)(+) to the first limit [NO(+)(X(1)Sigma(+))+O((3)P)] via the triplet states is unlikely since the MECPs lie very high above X(1)Sigma(g)(+). For the a(3)B(2) and b(3)A(2) states, adiabatic dissociation processes to the first limit may occur. Both the A(1)A(2) and B(1)B(2) states can undergo processes of predissociation to the first limit by a repulsive 2(3)A'' state, since the MECPs lie low above A(1)A(2) and B(1)B(2) and the calculated spin-orbit couplings at the MECPs are not small.

摘要

采用CASPT2(多组态二阶微扰理论)方法,在分子几何构型下对NO₂⁺离子的17个低激发单重态和三重态进行了计算。得到了CASPT2垂直相对能量(T(v)'),并确定了这些离子态(主要或振激电离态)的特征。对于八个低激发态,进行了CASPT2几何构型优化计算,得到了CASPT2绝热相对能量(T(0))。我们得出结论,NO₂⁺的1¹A₁、1³B₂、1³A₂、1¹A₂、1¹B₂、1³A₁、2³B₁和3³B₂态分别对应于X¹Σg⁺、a³B₂、b³A₂、A¹A₂、B¹B₂、c³A₁、d³B₁和(3b₂)⁻¹ ³B₂态(在Brundle等人[1]和Baltzer等人[2]的光电子能谱中观察到的低于20 eV的八个离子态)。1¹A₁、1³B₂、1³A₂、1¹A₂、1¹B₂、1³A₁和3³B₂态是主要电离态,这些态的CASPT2 T(v)'和T(0)值与参考文献[1]和[2]中的相应实验值接近。2³B₁态不是典型的主要电离态,2³B₁的CASPT2 T(v)'和T(0)值与参考文献[1]和[2]中d³B₁的实验值合理相符(1³B₁的CASPT2 T(0)值比实验值小超过2.5 eV)。基于我们的CASPT2 T(0)计算,我们对Jarvis等人观察到的低于20 eV的d³A₁、C¹B₁和D¹B₂态的归属以及Hirst对1³B₁、1¹B₁和³A₁态的MRCI T(0)值进行了评论。基于CASPT2势能曲线(PEC)和CASSCF单重态/三重态最小能量交叉点(MECP)计算,我们得出了关于从X¹Σg⁺、a³B₂、b³A₂、A¹A₂和B¹B₂态发生O损失光解离的以下结论,这些结论与实验事实相符。X¹Σg⁺态绝热解离至第二极限[NO⁺(X¹Σ⁺)+O(¹D)]的过程由于沿PEC存在高能垒(>5.0 eV)而不能发生,并且X¹Σg⁺通过三重态至第一极限[NO⁺(X¹Σ⁺)+O(³P)] 的非绝热过程不太可能,因为MECP位于X¹Σg⁺上方很高的位置。对于a³B₂和b³A₂态,可能发生至第一极限的绝热解离过程。A¹A₂和B¹B₂态都可以通过排斥性的2³A''态经历预解离至第一极限的过程,因为MECP位于A¹A₂和B¹B₂上方较低的位置,并且在MECP处计算得到的自旋 - 轨道耦合不小。

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