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苯硫酚中的氢原子转移反应:两种新硫酮异构体的光生成

Hydrogen atom transfer reactions in thiophenol: photogeneration of two new thione isomers.

作者信息

Reva Igor, Nowak Maciej J, Lapinski Leszek, Fausto Rui

机构信息

Department of Chemistry, University of Coimbra, 3004-535 Coimbra, Portugal.

出版信息

Phys Chem Chem Phys. 2015 Feb 21;17(7):4888-98. doi: 10.1039/c4cp04125a.

Abstract

Photoisomerization reactions of monomeric thiophenol have been investigated for the compound isolated in low-temperature argon matrices. The initial thiophenol population consists exclusively of the thermodynamically most stable thiol form. Phototransformations were induced by irradiation of the matrices with narrowband tunable UV light. Irradiation at λ > 290 nm did not induce any changes in isolated thiophenol molecules. Upon irradiation at 290-285 nm, the initial thiol form of thiophenol converted into its thione isomer, cyclohexa-2,4-diene-1-thione. This conversion occurs by transfer of an H atom from the SH group to a carbon atom at the ortho position of the ring. Subsequent irradiation at longer wavelengths (300-427 nm) demonstrated that this UV-induced hydrogen-atom transfer is photoreversible. Moreover, upon irradiation at 400-425 nm, the cyclohexa-2,4-diene-1-thione product converts, by transfer of a hydrogen atom from the ortho to para position, into another thione isomer, cyclohexa-2,5-diene-1-thione. The latter thione isomer is also photoreactive and is consumed if irradiated at λ < 332 nm. The obtained results clearly show that H-atom-transfer isomerization reactions dominate the unimolecular photochemistry of thiophenol confined in a solid argon matrix. A set of low-intensity infrared bands, observed in the spectra of UV irradiated thiophenol, indicates the presence of a phenylthiyl radical with an H- atom detached from the SH group. Alongside the H-atom-transfer and H-atom-detachment processes, the ring-opening photoreaction occurred in cyclohexa-2,4-diene-1-thione by the cleavage of the C-C bond at the alpha position with respect to the thiocarbonyl C[double bond, length as m-dash]S group. The resulting open-ring conjugated thioketene adopts several isomeric forms, differing by orientations around single and double bonds. The species photogenerated upon UV irradiation of thiophenol were identified by comparison of their experimental infrared spectra with the spectra theoretically calculated for the candidate structures at the B3LYP/aug-cc-pVTZ level.

摘要

已对低温氩气基质中分离出的单体苯硫酚的光异构化反应进行了研究。初始苯硫酚群体仅由热力学上最稳定的硫醇形式组成。通过用窄带可调谐紫外光照射基质来诱导光转化。在λ>290nm处照射不会引起分离的苯硫酚分子发生任何变化。在290 - 285nm处照射时,苯硫酚的初始硫醇形式转化为其硫酮异构体,即环己 - 2,4 - 二烯 - 1 - 硫酮。这种转化是通过一个氢原子从SH基团转移到环邻位的碳原子上发生的。随后在较长波长(300 - 427nm)处照射表明,这种紫外诱导的氢原子转移是光可逆的。此外,在400 - 425nm处照射时,环己 - 2,4 - 二烯 - 1 - 硫酮产物通过一个氢原子从邻位转移到对位,转化为另一种硫酮异构体,即环己 - 2,5 - 二烯 - 1 - 硫酮。后一种硫酮异构体也是光反应性的,如果在λ<332nm处照射会被消耗。所得结果清楚地表明,氢原子转移异构化反应主导了固态氩气基质中受限的苯硫酚的单分子光化学。在紫外照射的苯硫酚光谱中观察到的一组低强度红外带表明存在一个从SH基团脱离了一个氢原子的苯硫基自由基。除了氢原子转移和氢原子脱离过程外,环己 - 2,4 - 二烯 - 1 - 硫酮中相对于硫羰基C[双键,长度为m - 破折号]S基团的α位的C - C键断裂发生了开环光反应。生成的开环共轭硫代乙烯酮采用几种异构体形式,它们在单键和双键周围的取向不同。通过将苯硫酚紫外照射产生的物种的实验红外光谱与在B3LYP/aug - cc - pVTZ水平上为候选结构理论计算的光谱进行比较,对这些物种进行了鉴定。

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