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首页> 外文期刊>The Journal of Chemical Physics >Vinyl radical visible spectroscopy and excited state dynamics
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Vinyl radical visible spectroscopy and excited state dynamics

机译:乙烯基自由基可见光谱和激发态动力学

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The vinyl radical (C_2H_3)A~2A"<-X~2A' spectrum has been measured between 5320 and 385 nm using cavity-ringdown spectroscopy. The active vibrational progressions involve C-C stretching and alpha H-C-C bending vibrations. Optical rotational constants and linewidths were determined for the first four vibrational bands by modeling the spectrum as an asymmetric top. The best-fit rotational constants obtained for the excited electronic state are consistent with the molecular geometry predicted by ab initio calculations. The lifetime of the vibrationless level in the excited electronic state is estimated to be a few picoseconds, and increasing vibrational excitation leads to a decrease in the lifetime, based upon an increasing linewidth. Various possibilities for the predissociation mechanism are discussed. The most likely is judged to be a conical intersection or seam of intersections. A preliminary CASSCF calculation has found the point on the relevant potential energy surfaces at which the ground and electronically excited states are closest. While the geometry and other properties of this crossing point are in accord with the experimental results, the calculated position of the point of closest approach of the two electronic states lies considerably (> 1 eV, including zero-point energy) above the already predissociative A~2A" state origin. Other mechanisms are also discussed to account for the observed rapid predissociation. Clearly there is a need for a higher level theoretical work on this problem.
机译:使用腔衰荡光谱法在5320和385 nm之间测量了乙烯基(C_2H_3)A〜2A“ <-X〜2A'光谱。主动振动过程包括CC拉伸和αHCC弯曲振动。光学旋转常数和线宽分别为通过将光谱建模为不对称顶部来确定前四个振动带,获得的激发电子态的最佳拟合旋转常数与从头算计算得出的分子几何形状一致。状态估计为几皮秒,振动激发的增加会导致线宽的增加而导致寿命的降低,讨论了预离解机理的各种可能性,最有可能被判断为圆锥形相交或相交的接缝。CASSCF的初步计算已在相关势能面上找到了基态和电子激发态最接近。尽管该交点的几何形状和其他性质与实验结果相符,但两个电子态最接近点的计算位置相当大(> 1 eV,包括零点能量)在已经预先离解的A之上〜2A“状态的起源。还讨论了其他机制来解释观察到的快速预解离。显然,需要针对此问题进行更高级的理论研究。

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