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dc.contributor.author王怡穎zh_TW
dc.contributor.author李遠鵬zh_TW
dc.contributor.authorWang, Yi-Yingen_US
dc.contributor.authorLee, Yuan-Pernen_US
dc.date.accessioned2018-01-24T07:39:22Z-
dc.date.available2018-01-24T07:39:22Z-
dc.date.issued2017en_US
dc.identifier.urihttp://etd.lib.nctu.edu.tw/cdrfb3/record/nctu/#GT070352415en_US
dc.identifier.urihttp://hdl.handle.net/11536/140464-
dc.description.abstractCriegee intermediates are carbonyl oxides that play critical roles in the ozonolysis of alkenes in the atmosphere. So far, the infrared spectra of only the simplest Criegee intermediates CH2OO and CH3CHOO are reported. We report the transient infrared spectrum of the next member (CH3)2COO, produced from ultraviolet irradiation of a mixture of (CH3)2CI2 + O2 in a flow reactor and detected with a step-scan Fourier-transform spectrometer. The four observed bands provide definitive identification of (CH3)2COO. The observed vibrational wavenumbers and rotational contours agree with those predicted with quantum-chemical calculations. The rapid decay yields an estimate of the rate coefficient for self-reaction, ~1.610−10 cm3 molecule−1 s−1. The direct IR detection of (CH3)2COO should prove useful for field measurements and laboratory investigations of related Criegee mechanism.zh_TW
dc.description.abstractCriegee intermediates are carbonyl oxides that play critical roles in the ozonolysis of alkenes in the atmosphere. So far, the infrared spectra of only the simplest Criegee intermediates CH2OO and CH3CHOO are reported. We report the transient infrared spectrum of the next member (CH3)2COO, produced from ultraviolet irradiation of a mixture of (CH3)2CI2 + O2 in a flow reactor and detected with a step-scan Fourier-transform spectrometer. The four observed bands provide definitive identification of (CH3)2COO. The observed vibrational wavenumbers and rotational contours agree with those predicted with quantum-chemical calculations. The rapid decay yields an estimate of the rate coefficient for self-reaction, ~1.610−10 cm3 molecule−1 s−1. The direct IR detection of (CH3)2COO should prove useful for field measurements and laboratory investigations of related Criegee mechanism.en_US
dc.language.isozh_TWen_US
dc.subject大氣化學zh_TW
dc.subject氧化物zh_TW
dc.subject克里奇分子zh_TW
dc.subject紅外光譜zh_TW
dc.subjectCriegeeen_US
dc.subjectinfrared spectrumen_US
dc.subjectradicalen_US
dc.subjectatmospheric chemistryen_US
dc.title利用步進式掃描傅氏轉換時域解析紅外光譜法研究Criegee中間體(CH3)2COO之紅外吸收光譜zh_TW
dc.titleInfrared absorption spectra of Criegee intermediate (CH3)2COO detected with step-scan time-resolved Fourier-transform spectroscopyen_US
dc.typeThesisen_US
dc.contributor.department應用化學系分子科學碩博士班zh_TW
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