首页> 外文期刊>The Journal of Organic Chemistry >Mechanistic aspects of ketene formation deduced from femtosecond photolysis of diazocyclohexadienone, o-phenylene thioxocarbonate, and 2-chlorophenol
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Mechanistic aspects of ketene formation deduced from femtosecond photolysis of diazocyclohexadienone, o-phenylene thioxocarbonate, and 2-chlorophenol

机译:飞秒重氮重氮环己二酮,邻苯撑硫代碳酸酯和2-氯苯酚的飞秒光解可推断出烯酮形成的机理

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摘要

The photochemistry of diazocyclohexadienone (1), o-phenylene thioxocarbonate (2), and 2-chlorophenol (3) in solution was studied using time-resolved UV-vis and IR transient absorption spectroscopies. In these three cases, the same product cyclopentadienyl ketene (5) is formed, and two different mechanistic pathways leading to this product are discussed: (a) rearrangement in the excited state (RIES) and (b) a stepwise route involving the intermediacy of vibrationally excited or relaxed carbene. Femtosecond UV-vis detection allows observation of an absorption band assigned to singlet 2-oxocyclohexa-3,5- dienylidene (4), and this absorption feature decays with an ~30 ps time constant in hexane and acetonitrile. The excess vibrational energy present in nascent carbenes results in the ultrafast Wolff rearrangement of the hot species. IR detection shows that photoexcited o-phenylene thioxocarbonate (2) and 2-chlorophenol (3) efficiently form the carbene species while diazocyclohexadienone (1) photochemistry proceeds mainly by a concerted process.
机译:使用时间分辨的UV-vis和IR瞬态吸收光谱学研究了重氮环己二酮(1),邻亚苯基硫代碳酸酯(2)和2-氯苯酚(3)的光化学性质。在这三种情况下,会形成相同的产物环戊二烯基乙烯酮(5),并讨论了导致该产物的两种不同的机理途径:(a)激发态重排(RIES)和(b)涉及中间体的逐步反应卡宾振动激发或松弛。飞秒紫外可见检测可观察到分配给单线态2-氧代环己-3,5-二烯叉(4)的吸收带,该吸收特征在己烷和乙腈中的时间常数约为30 ps时衰减。存在于新生卡宾中的过量振动能导致热物种的超快速沃尔夫重排。红外检测表明,光激发的邻苯撑硫代碳酸酯(2)和2-氯苯酚(3)有效地形成了卡宾物质,而重氮环己二酮(1)的光化学反应主要通过协同过程进行。

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