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首页> 外文期刊>Bulletin of the Korean Chemical Society >Photodissociation Dynamics of Allyl Alcohol in UV: The Exit Channel Barrier for OH Production
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Photodissociation Dynamics of Allyl Alcohol in UV: The Exit Channel Barrier for OH Production

机译:紫外线中烯丙醇的光解离动力学:OH生成的出口通道壁垒

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摘要

Photodissociation dynamics of allyl alcohol (H2C=CH-CH20H) has been investigated at 205 - 213 nm along the UV absorption band by measuring rotationally-resolved laser-induced fluorescence spectra of OH radicals. Observed energy partitioning of the available energy among products at all photon energies investigated was similar and the barrier energy for OH production is about 574.7 kJ/mol from the OH yield measurements. The potential energy surfaces for the So, T1, and S1 excited states along the dissociation coordinate were obtained by ab initio quantum chemical calculations. The observed energy partitioning was successfully modeled by the "barrier-impulsive model" with the reverse barrier and the geometry obtained by the calculated potential energy surfaces. The dissociation takes place on the T1 excited state potential energy surface with an energy barrier in the exit channel and a large portion of the photon energy is distributed in the internal degrees of freedom of the polyatomic products.
机译:通过测量旋转分解的激光诱导的OH自由基荧光光谱,研究了烯丙醇(H2C = CH-CH20H)在205-213 nm沿紫外吸收带的光解离动力学。在所研究的所有光子能量下,产物之间的可用能量的观察到的能量分配是相似的,并且从OH产率测量值来看,用于OH生产的势垒能量约为574.7 kJ / mol。 So,T1和S1激发态沿着解离坐标的势能面是通过从头算起的量子化学计算获得的。观察到的能量分配通过“势垒-冲激模型”成功建模,具有反向势垒和通过计算的势能面获得的几何形状。离解发生在T1激发态势能表面上,在出口通道中带有能垒,大部分光子能量分布在多原子产物的内部自由度中。

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