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对氨基苯叠氮化物光化学的基质隔离与计算研究

Matrix isolation and computational study of the photochemistry of p-azidoaniline.

作者信息

Pritchina Elena A, Gritsan Nina P, Bally Thomas

机构信息

Institute of Chemical Kinetics and Combustion, Siberian Branch of Russian Academy of Sciences, Novosibirsk State University, 630090 Novosibirsk, Russia.

出版信息

Phys Chem Chem Phys. 2006 Feb 14;8(6):719-27. doi: 10.1039/b511229j. Epub 2005 Dec 15.

Abstract

The photochemistry of p-azidoaniline was studied in argon matrices in the absence and presence of oxygen. With the help of quantum chemical calculations we were able to characterize the triplet p-aminophenylnitrene as well as the cis- and trans-p-aminophenylnitroso oxides. It was found that the latter two isomers can be interconverted by selective irradiation and that they are ultimately converted into p-nitroaniline. Although restricted wavefunctions of the nitroso oxides are unstable, CASSCF calculations turned up no evidence for the claimed diradical character of these compounds. Also we found no evidence for dioxaziridines as intermediates of the conversion of the nitroso oxides to p-nitroaniline.

摘要

在氩气基质中,在无氧和有氧条件下研究了对叠氮基苯胺的光化学性质。借助量子化学计算,我们能够表征三重态对氨基苯氮烯以及顺式和反式对氨基苯亚硝基氧化物。结果发现,后两种异构体可以通过选择性辐照相互转化,并最终转化为对硝基苯胺。尽管亚硝基氧化物的受限波函数不稳定,但完全活化空间自洽场(CASSCF)计算并未发现这些化合物具有所声称的双自由基特征的证据。我们也没有发现二恶唑烷作为亚硝基氧化物转化为对硝基苯胺的中间体的证据。

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