首页> 外文期刊>Journal of the American Chemical Society >REACTION OF CYCLOOCTENES WITH SINGLET OXYGEN - TRAPPING OF A PEREPOXIDE INTERMEDIATE
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REACTION OF CYCLOOCTENES WITH SINGLET OXYGEN - TRAPPING OF A PEREPOXIDE INTERMEDIATE

机译:单氧捕集过氧化物中间体对环球的反应。

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The products and rate constants for total physical and chemical quenching (k(q) + k(t)) of singlet oxygen (O-1(2)) by cis- and trans-cyclooctene were determined in two solvents of different polarity. Small amounts of cis-cyclooctene are produced during the reaction of the trans-isomer. in CDCl3 and acetone-d(6), k(q) + k(r) for cis-cyclooctene was 1.3 x 10(4) M(-1) s(-1) while the rate constants (k(r)) for the reaction of trans-cyclooctene were 2.3 x 10(4) and 3.4 x 10(4) M(-1) s(-1), respectively. Competition experiments with 2-methyl-2-pentene (2M2P) suggest a substantial contribution of physical quenching for the trans-alkene while the cis-alkene removes O-1(2) mostly by chemical reaction. The physical quenching of O-1(2) by trans-cyclooctene is explained by a perepoxide intermediate which can open to a zwitterion that can abstract an allylic hydrogen to give the 3-hydroperoxycyclooctene ene product or isomerize and lose O-2 to form cis-cyclooctene. A perepoxide intermediate can be trapped using triphenyl phosphite with trans-but not cis-cyclooctene. trans-Cyclooctene quenches C-3(70) with a rate constant of 3.4 x 10(5) M(-1) s(-1). [References: 82]
机译:在两种极性不同的溶剂中,测定了顺式和反式环辛烯对单线态氧(O-1(2))进行整体物理和化学猝灭(k(q)+ k(t))的乘积和速率常数。在反式异构体的反应过程中产生少量的顺式环辛烯。在CDCl3和丙酮-d(6)中,顺式环辛烯的k(q)+ k(r)为1.3 x 10(4)M(-1)s(-1)而速率常数(k(r))反式环辛烯的反应分别为2.3 x 10(4)和3.4 x 10(4)M(-1)s(-1)。用2-甲基-2-戊烯(2M2P)进行的竞争实验表明,物理淬灭对反式链烯的贡献很大,而顺式链烯主要通过化学反应除去O-1(2)。 O-1(2)被反式环辛烯物理淬灭的原因是过氧化物中间体可以打开两性离子,该两性离子可以提取烯丙基氢以生成3-氢过氧环辛烯产物或异构化并失去O-2形成顺式-环辛烯。可以使用亚磷酸三苯酯与反式但不与顺式环辛烯一起捕集过氧化物中间体。反式环辛烯以3.4 x 10(5)M(-1)s(-1)的速率常数淬灭C-3(70)。 [参考:82]

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