The ultrafast photo-induced ring opening of the oxirane derivative trans-stilbene oxide has been studied through the use of ultrafast UV/UV pump-probe spectroscopy by using photo-ion detection. Single- and multiphoton probe paths and final states were identified through comparisons between UV power studies and synchrotron-based vacuum ultraviolet (VUV) single-photon ionization studies. Three major time-dependent features of the parent ion (sub-450â fs decay, (1.5±0.2)â ps, and >100â ps) were observed. These decays are discussed in conjunction with the primary ring-opening mechanism of stilbene oxide, which occurs through C-C dissociation in the oxirane ring. The appearance of fragments relating to the masses of dehydrogenated diphenylmethane (167â amu) and dehydrogenated methylbenzene (90â amu) were also investigated. The appearance of the 167â amu fragment could suggest an alternative ultrafast ring-opening pathway via the dissociation of one of the C-O bonds within the oxirane ring.
Ultrafast Photo-ion Probing of the Ring-Opening Process in Trans-Stilbene Oxide.
利用超快光离子探测反式二苯乙烯氧化物中的开环过程。
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| 期刊: | Chemistry | 影响因子: | 2.400 |
| 时间: | 2021 | 起止号: | 2021 Aug 5; 27(44):11418-11427 |
| doi: | 10.1002/chem.202101343 | ||
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