Studied of photolysis reaction of iodoform and relative molecular research

碩士 === 國立中央大學 === 化學研究所 === 98 === We studied the photolysis reaction of iodoform (CHI3) and iodomethane (CH3I) at various near-ultraviolet wavelengths (266 nm, 280 nm and 310 nm) by using nascent emission spectroscopy and laser-induced dispersed fluorescence spectroscopy in a flow system. Excited s...

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Main Authors: Hsiang-Fu Liao, 廖祥甫
Other Authors: Bor-Chen Chang
Format: Others
Language:zh-TW
Published: 2010
Online Access:http://ndltd.ncl.edu.tw/handle/60446212443022568203
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spelling ndltd-TW-098NCU050650962016-04-20T04:18:02Z http://ndltd.ncl.edu.tw/handle/60446212443022568203 Studied of photolysis reaction of iodoform and relative molecular research 以近紫外光光解碘仿及相關分子之光譜研究 Hsiang-Fu Liao 廖祥甫 碩士 國立中央大學 化學研究所 98 We studied the photolysis reaction of iodoform (CHI3) and iodomethane (CH3I) at various near-ultraviolet wavelengths (266 nm, 280 nm and 310 nm) by using nascent emission spectroscopy and laser-induced dispersed fluorescence spectroscopy in a flow system. Excited species including CH (A2Δ, B2Σ-, and C2Σ+) and atomic iodine were observed in the nascent emission spectrum following the photolysis of CHI3, while only CH (A2Δ) and some unknown bands were seen in the nascent emission spectrum following photolysis of CH3I. Molecular iodine (I2) was discovered in the laser-induced dispersed fluorescence spectrum following the photolysis of CHI3 as well as in that of CH3I, but the possible reaction intermediates such as CHI or CH2 cannot be found. Other experiments such as power dependence, concentration dependence and delay time measurements were carried out to verify the multiphoton photolysis mechanism. Based upon the results, I2 is formed from the collisions of iodine atoms generated from the photolysis at first photon. Bor-Chen Chang 張伯琛 2010 學位論文 ; thesis 82 zh-TW
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language zh-TW
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description 碩士 === 國立中央大學 === 化學研究所 === 98 === We studied the photolysis reaction of iodoform (CHI3) and iodomethane (CH3I) at various near-ultraviolet wavelengths (266 nm, 280 nm and 310 nm) by using nascent emission spectroscopy and laser-induced dispersed fluorescence spectroscopy in a flow system. Excited species including CH (A2Δ, B2Σ-, and C2Σ+) and atomic iodine were observed in the nascent emission spectrum following the photolysis of CHI3, while only CH (A2Δ) and some unknown bands were seen in the nascent emission spectrum following photolysis of CH3I. Molecular iodine (I2) was discovered in the laser-induced dispersed fluorescence spectrum following the photolysis of CHI3 as well as in that of CH3I, but the possible reaction intermediates such as CHI or CH2 cannot be found. Other experiments such as power dependence, concentration dependence and delay time measurements were carried out to verify the multiphoton photolysis mechanism. Based upon the results, I2 is formed from the collisions of iodine atoms generated from the photolysis at first photon.
author2 Bor-Chen Chang
author_facet Bor-Chen Chang
Hsiang-Fu Liao
廖祥甫
author Hsiang-Fu Liao
廖祥甫
spellingShingle Hsiang-Fu Liao
廖祥甫
Studied of photolysis reaction of iodoform and relative molecular research
author_sort Hsiang-Fu Liao
title Studied of photolysis reaction of iodoform and relative molecular research
title_short Studied of photolysis reaction of iodoform and relative molecular research
title_full Studied of photolysis reaction of iodoform and relative molecular research
title_fullStr Studied of photolysis reaction of iodoform and relative molecular research
title_full_unstemmed Studied of photolysis reaction of iodoform and relative molecular research
title_sort studied of photolysis reaction of iodoform and relative molecular research
publishDate 2010
url http://ndltd.ncl.edu.tw/handle/60446212443022568203
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