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HO₂、H₂O₂和H₂CO的真空紫外光电离截面。

VUV photoionization cross sections of HO2, H2O2, and H2CO.

作者信息

Dodson Leah G, Shen Linhan, Savee John D, Eddingsaas Nathan C, Welz Oliver, Taatjes Craig A, Osborn David L, Sander Stanley P, Okumura Mitchio

机构信息

Division of Chemistry and Chemical Engineering and §NASA Jet Propulsion Laboratory, California Institute of Technology , Pasadena, California 91125, United States.

出版信息

J Phys Chem A. 2015 Feb 26;119(8):1279-91. doi: 10.1021/jp508942a. Epub 2015 Feb 10.

Abstract

The absolute vacuum ultraviolet (VUV) photoionization spectra of the hydroperoxyl radical (HO2), hydrogen peroxide (H2O2), and formaldehyde (H2CO) have been measured from their first ionization thresholds to 12.008 eV. HO2, H2O2, and H2CO were generated from the oxidation of methanol initiated by pulsed-laser-photolysis of Cl2 in a low-pressure slow flow reactor. Reactants, intermediates, and products were detected by time-resolved multiplexed synchrotron photoionization mass spectrometry. Absolute concentrations were obtained from the time-dependent photoion signals by modeling the kinetics of the methanol oxidation chemistry. Photoionization cross sections were determined at several photon energies relative to the cross section of methanol, which was in turn determined relative to that of propene. These measurements were used to place relative photoionization spectra of HO2, H2O2, and H2CO on an absolute scale, resulting in absolute photoionization spectra.

摘要

已测量了氢过氧自由基(HO₂)、过氧化氢(H₂O₂)和甲醛(H₂CO)从其第一电离阈值到12.008电子伏特的绝对真空紫外(VUV)光电离光谱。HO₂、H₂O₂和H₂CO是在低压慢流反应器中通过Cl₂的脉冲激光光解引发甲醇氧化产生的。通过时间分辨多路复用同步辐射光电离质谱法检测反应物、中间体和产物。通过对甲醇氧化化学动力学进行建模,从随时间变化的光电离信号中获得绝对浓度。相对于甲醇的截面,在几个光子能量下测定了光电离截面,而甲醇的截面又是相对于丙烯的截面测定的。这些测量用于将HO₂、H₂O₂和H₂CO的相对光电离光谱置于绝对尺度上,从而得到绝对光电离光谱。

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