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在 355-414nm 区域内,压力和温度依赖的乙二醛光解:来自多个态的离解的证据。

Pressure and temperature dependent photolysis of glyoxal in the 355-414 nm region: evidence for dissociation from multiple states.

机构信息

School of Chemistry, University of Leeds, Leeds, UK.

出版信息

Phys Chem Chem Phys. 2013 May 7;15(17):6516-26. doi: 10.1039/c3cp43596b.

Abstract

The photolysis of glyoxal has been investigated in the 355-414 nm region by dye laser photolysis coupled with cavity ring-down spectroscopy. Absolute quantum yields of HCO, ΦHCO, were determined using the reaction of chlorine atoms with formaldehyde as an actinometer. The dependence of the quantum yield on pressure was investigated in 3-400 Torr of nitrogen buffer gas and at four temperatures: 233 K, 268 K, 298 K and 323 K. For 355 nm ≤ λ < 395 nm the HCO quantum yield is pressure dependent with linear Stern-Volmer (SV) plots (1/ΦHCO vs. pressure). The zero pressure quantum yield, obtained by extrapolation of the SV plots, rises from 1.6 to 2 between 355 and 382 nm and remains at 2 up to 395 nm. For λ ≥ 395 nm ΦHCO shows a stronger pressure dependence and non-linear SV plots, compatible with formation of HCO by dissociation from two electronic states of glyoxal with significantly different lifetimes. These observations are used to develop a mechanism for the photolysis of glyoxal over the wavelength range studied.

摘要

通过染料激光光解与腔衰荡光谱相结合,在 355-414nm 区域研究了乙二醛的光解。利用氯原子与甲醛的反应作为光度计,确定了 HCO 的绝对量子产率 ΦHCO。在 3-400 托的氮气缓冲气体和四个温度下(233K、268K、298K 和 323K)研究了量子产率对压力的依赖性。对于 355nm≤λ<395nm,HCO 的量子产率与压力有关,具有线性 Stern-Volmer(SV)图(1/ΦHCO 与压力)。通过 SV 图的外推得到的零压力量子产率,在 355nm 到 382nm 之间从 1.6 上升到 2,在 395nm 时仍保持在 2。对于 λ≥395nm,ΦHCO 表现出更强的压力依赖性和非线性 SV 图,这与乙二醛通过两种具有显著不同寿命的电子态解离形成 HCO 一致。这些观察结果被用来发展一个在研究的波长范围内乙二醛光解的机制。

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