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Electronic spectra of nitroethylene

机译:硝基乙烯的电子光谱

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摘要

A systematic study of the electronic excited states of nitroethylene (C _2H _3NO _2) was carried out using the approximate coupled-cluster singles-and-doubles approach with the resolution of the identity (RI-CC2), the time dependent density functional theory with the CAMB3LYP functional (TDDFT/CAMB3LYP) and the DFT multireference configuration interaction (DFT/MRCI) method. Vertical transition energies and optical oscillator strengths were computed for a maximum of 20 singlet transitions. Semiclassical simulations of the ultraviolet (UV) spectra were performed at the RI-CC2 and DFT/MRCI levels. The main features in the UV spectrum were assigned to a weak n-π* transition, and two higher energy π _(CC+O)- π* bands. These characteristics are common to molecules containing NO _2 groups. Simulated spectra are in good agreement with the experimental spectrum. The energy of the bands in the DFT/MRCI simulation agrees quite well with the experiment, although it overestimates the band intensities. RI-CC2 produced intensities comparable to the experiment, but the bands were blue shifted. A strong π _(CC+O)-π* band, not previously measured, was found in the 8-9 eV range.
机译:利用近似耦合簇单双打方法,以身份(RI-CC2)的分辨力,对时间依赖性密度泛函理论进行了研究,对硝基乙烯(C _2H _3NO _2)的电子激发态进行了系统研究。 CAMB3LYP功能(TDDFT / CAMB3LYP)和DFT多参考配置交互(DFT / MRCI)方法。计算了最多20个单重态跃迁的垂直跃迁能量和光学振荡器强度。在RI-CC2和DFT / MRCI水平上进行了紫外线(UV)光谱的半经典模拟。 UV光谱中的主要特征分配给一个弱的n-π*跃迁和两个较高的能量π_(CC + O)-π*谱带。这些特征对于含有NO _2基团的分子是共有的。模拟光谱与实验光谱非常吻合。 DFT / MRCI模拟中的频带能量与实验非常吻合,尽管它高估了频带强度。 RI-CC2产生的强度与实验相当,但是条带呈蓝移。在8-9 eV范围内发现了以前未测量到的强π_(CC + O)-π*带。

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