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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Competition between Photoisomerization and Photocyclization of the Cis Isomers of n-Styrylnaphthalenes and -Phenanthrenes
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Competition between Photoisomerization and Photocyclization of the Cis Isomers of n-Styrylnaphthalenes and -Phenanthrenes

机译:正苯乙烯基萘与菲的顺式异构体的光异构化与光环化之间的竞争

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摘要

The isomerization and cyclization photoreactions of the cis (Z) isomers of n-styrylnaphthalenes (n =1 and 2), n-styrylphenanthrenes (n =1, 2, 3, 4, and 9), and two related compounds, 3-styrylchrysene and 3-styrylbenzo[c]phenanthrene, were investigated by spectrophotometric and chromatographic techniques. The quantum yields of the two photoreactions were measured in aerated and deaerated nonpolar solvent at room temperature and compared with those reported in the literature for some of the molecules investigated and other related compounds. The combined use of high-performance liquid chromatographic and spectrophotometric techniques made easier the separation of the components of the photoreaction mixtures thus simplifying the study of the isomerization/cyclization competition and the measurement of the UV-vis absorption spectra and the thermal decay kinetics of the dihydrophenanthrene-type intermediates. The conformational equilibria in the ground state and the positional isomerism (n values) notably affect the prevalence of one or the other competitive photoreaction. Oxygen also plays an important role: practically it does not affect the quantum yield of the Z→ E process but has a drastic effect on the formation of the final oxidation product which can proceed even in the presence of traces of air. In three cases, non-negligible formation of a side colorless product was detected. It was assigned to an isomer of the normal photocyclization intermediate (4a,4bdihydrophenanthrene- type), formed by shift of one or both hydrogen atom(s) to other positions of the rings.Parallel ab initio calculations of the potential energy of the possible conformers helped to explain the structure effects on the competitive photoreactive relaxation pathways. Some correlations between the computed reagent/product energy difference in the ground state and the photocyclization yield and thermal stability of the intermediates were also verified.
机译:n-苯乙烯基萘(n = 1和2),n-苯乙烯基菲(n = 1、2、3、4和9)和两种相关化合物3-苯乙烯基丙烯的顺式(Z)异构体的异构化和环化光反应用分光光度法和色谱法研究了3-苯乙烯基苯并[c]菲。在室温下在充气和脱气的非极性溶剂中测量了两种光反应的量子产率,并将其与文献中报道的一些研究分子和其他相关化合物的量子产率进行了比较。高效液相色谱和分光光度技术的结合使用,使光反应混合物组分的分离更加容易,从而简化了异构化/环化竞争的研究以及UV-vis吸收光谱和热衰减动力学的研究。二氢菲型中间体。基态的构象平衡和位置异构现象(n值)显着影响一种或另一种竞争性光反应的发生率。氧气也起着重要的作用:实际上,它不影响Z→E过程的量子产率,但是对最终氧化产物的形成具有极大的影响,即使在存在微量空气的情况下,最终氧化产物也可以进行。在三种情况下,检测到无色的侧面无色产物的形成。它被分配给正常光环化中间体(4a,4bdihydrophenanthrene-type)的异构体,该异构体是通过一个或两个氢原子转移到环的其他位置而形成的。从头算是可能的构象异构体的势能帮助解释了结构对竞争性光反应弛豫途径的影响。还验证了计算出的基态试剂/产物能量差与中间体的光环化收率和热稳定性之间的一些相关性。

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