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Nitrenes, diradicals, and ylides. Ring expansion and ring opening in 2-quinazolylnitrenes

机译:硝基,双基和叶立德。 2-喹唑基腈的开环和开环

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Tetrazolo[1,5-a] quinazoline (9) is converted to 2-azidoquinazoline (10) on sublimation at 200 degrees C and above, and the azide-tetrazole equilibrium is governed by entropy. 2-Quinazolylnitrenes 11 and 27 and/ or their ring expansion products 14 and 29 can undergo type I (ylidic) and type II (diradicaloid) ring opening. Argon matrix photolysis of 9/10 affords 2-quinazolylnitrene (11), which has been characterized by ESR, UV, and IR spectroscopy. A minor amount of a second nitrene, formed by rearrangement or ring opening, is also observed. A diradical (19) is formed rapidly by type II ring opening and characterized by ESR spectroscopy; it decays thermally at 15 K with a half-life of ca. 47 min, in agreement with its calculated facile intersystem crossing (19T -> 19OSS) followed by facile cyclization/rearrangement to 1-cyanoindazole (21) (calculated activation barrier 1- 2 kcal/mol) and N-cyanoanthranilonitrile (22). 21 and 22 are the isolated end products of photolysis. 21 is also the end product of flash vacuum thermolysis. An excellent linear correlation between the zero-field splitting parameter D (cm(-1)) and the spin density F on the nitrene N calculated at the B3LYP/EPRIII level is reported (R-2 = 0.993 for over 100 nitrenes). Matrix photolysis of 3-phenyltetrazolo[1,5-a] quinazoline (25) affords the benzotriazacycloheptatetraene 29, which can be photochemically interconverted with the type I ring opening product 2-isocyano-alpha-diazo-alpha- phenyltoluene (33) as determined by IR and UV spectroscopy. The corresponding carbene 37, obtained by photolysis of 33, was detected by matrix ESR spectroscopy.
机译:在200℃以上升华时,将Tetrazolo [1,5-a]喹唑啉(9)转化为2-叠氮喹唑啉(10),叠氮化物-四唑平衡受熵控制。 2-喹唑基氮烯11和27和/或它们的扩环产物14和29可经历I型(ylidic)和II型(diradicaloidoid)开环。 9/10的氩气基质光解可得到2-quinazolylnitrene(11),已通过ESR,UV和IR光谱进行了表征。还观察到通过重排或开环形成的少量第二氮烯。通过II型开环快速形成双自由基(19),并通过ESR光谱对其进行表征;它在15 K时热衰减,半衰期约为。 47分钟,与其容易计算的系统间穿越(19T-> 19OSS)相符,然后轻松进行环化/重排成1-氰基吲唑(21)(计算的活化势垒1-2 kcal / mol)和N-氰基蒽腈(22)。 21和22是光解的最终产物。 21也是闪蒸真空热解的最终产品。零场分裂参数D(cm(-1))与在B3LYP / EPRIII浓度下计算出的腈N的自旋密度F之间存在极好的线性相关性(对于100多个腈,R-2 = 0.993)。 3-苯基四唑并[1,5-a]喹唑啉(25)的基质光解得到苯并三氮杂环庚二烯29,可以将其与I型开环产物2-异氰基-α-重氮-α-苯基甲苯(33)光化学转化通过红外和紫外光谱。通过基质ESR光谱法检测通过33的光解获得的相应的卡宾37。

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