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Collision-Induced Electronic Relaxation of Thiophosgene (S1)

机译:硫代光气(S1)的碰撞诱导电子弛豫

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Fluorescence from the electronically excited thiophosgene (Cl2CS) in its first excited singlet state (S1) is efficiently quenched by collision. Rates of the collision-induced electronic relaxation were obtained for various vibrational levels in the S1 state by measuring the fluorescence lifetimes. We found that the relaxation process is strongly energy-dependent; the rate consistently increases by a factor of ~40 with the increase of vibrational energy from 0 to 1450 cm-1. Collision-induced intersystem crossing from the S1 to the first triplet state (T1) is attributed to the major process responsible for the electronic relaxation.
机译:来自电子激发的硫光气(Cl2CS)处于其第一个激发的单重态(S1)的荧光通过碰撞被有效地猝灭。通过测量荧光寿命,获得了在S1状态下各种振动水平下碰撞诱导的电子弛豫速率。我们发现弛豫过程强烈依赖于能量。随着振动能量从0到1450 cm-1的增加,该速率持续增加约40倍。从S1到第一三重态(T1)的碰撞诱发的系统间交叉归因于负责电子弛豫的主要过程。

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