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首页> 外文期刊>Chinese journal of chemical physics >UV Photodissociation Dynamics of HN3 in 190-248 nm
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UV Photodissociation Dynamics of HN3 in 190-248 nm

机译:HN3在190-248 nm的紫外光解离动力学

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摘要

The H+N3 channel in the ultraviolet photodissociation of HN3 has been investigated from 190 nm to 248 nm using the high-n Rydberg H-atom time-of-flight technique.Product translational energy distributions as well as product angular anisotropy parameters were determined for the H+N3 channel at different photolysis wavelengths.N3 vibrational state distribution has also been derived from the product translational energy distribution at these wavelengths.Above photolysis wavelength 225 nm,HN3 predominantly dissociate through the repulsive state.Below 225 nm,a new slow channel starts to appear at 220 nm in addition to the existing channel.This channel is attributed to a ring closure dissociation channel to produce the cyclic N3 product.As photolysis energy increases,this new channel becomes more important.
机译:使用高n Rydberg H原子飞行时间技术研究了HN3紫外光解离中的H + N3通道,确定了产物平移能分布以及产物角各向异性参数H + N3通道在不同的光解波长下。N3振动态分布也从这些波长下的产物平移能量分布得出。在光解波长225 nm以上,HN3主要通过排斥态解离。在225 nm以下,是一条新的慢速通道除现有通道外,它开始出现在220 nm处。该通道归因于产生环状N3产物的闭环解离通道。随着光解能的增加,这一新通道变得越来越重要。

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