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- W2090147661 abstract "A system to measure time-resolved Fourier-transform infrared absorption spectra of gaseous samples using a commercial step-scan spectrometer is described. To increase the signal intensity, the incident infrared light is multipassed within a White cell. Light from a photolysis laser passes through the reaction cell to initiate the reaction in the flowing gaseous sample. The variation of absorbance is obtained from the ac-coupled signal whereas phase information and a reference spectrum are from the dc-coupled signal. The system is tested by probing the temporal evolution of HCl(v) in the chain reaction of H2 and Cl2 initiated by photolysis at 355 nm. Time-resolved absorption spectra of HCl(v=0–2) were obtained with spectral resolution 0.75 cm−1 and intervals down to 5 μs. Kinetic modeling of deduced temporal profiles of HCl(v=0–2) yields rate coefficients of (1.38±0.04)×10−14 and (5.8±0.4)×10−15 cm3 molecule−1 s−1 (in which error limits represent only the uncertainty of the fit) for reactions Cl+H2→HCl(v=0)+H and Cl+H2→HCl(v=1)+H, respectively; the total rate coefficient is in agreement with previous kinetic measurements." @default.
- W2090147661 created "2016-06-24" @default.
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- W2090147661 date "1997-10-22" @default.
- W2090147661 modified "2023-09-23" @default.
- W2090147661 title "Laser-photolysis/time-resolved Fourier-transform absorption spectroscopy: Formation and quenching of HCl(v) in the chain reaction Cl/Cl2/H2" @default.
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- W2090147661 doi "https://doi.org/10.1063/1.474264" @default.
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