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光致变色二苯并巴伦烯:长寿命三线态双自由基中间体。

Photochromic dibenzobarrlenes: long-lived triplet biradical intermediates.

作者信息

Sajimon Meledathu C, Ramaiah Danaboyina, Suresh Cherumuttathu H, Adam Waldemar, Lewis Frederick D, George Manapurathu V

机构信息

Photosciences and Photonics, Chemical Sciences and Technology Division and Computational Modeling and Simulation Section, National Institute for Interdisciplinary Science and Technology, Trivandrum, India.

出版信息

J Am Chem Soc. 2007 Aug 1;129(30):9439-45. doi: 10.1021/ja0719125. Epub 2007 Jul 11.

Abstract

Upon exposure to UV light, the disubstituted dibenzobarrelene derivative 1a turns green in the solid phase and reverts back to its original pale-yellow color within several hours in the dark. The lifetime of the colored species in degassed benzene at room temperature is 37 +/- 2 s (Ea for decoloration is 14.5 +/- 0.7 kcal mol-1 and log A is 8.92 +/- 0.5 s-1) and highly sensitive to molecular oxygen; the Stern-Volmer quenching constant is 6.9 +/- 0.2 x 108 M-1 s-1. Similarly, the disubstituted dibenzobarrelenes 1b and 1c exhibited pink coloration when exposed to UV light in the solid phase. On the basis of combined experimental and theoretical evidence, it is proposed that upon photoexcitation the excited singlet state of 1a undergoes rapid intersystem crossing to its triplet state, followed by intramolecular delta-H abstraction, to yield the triplet biradical intermediate (3)2. Upon prolonged irradiation, 2 undergoes cyclization to the alcohol 3, which affords the enone 4 as the final photoproduct. The delta-H abstraction on the triplet-state potential energy surface, calculated at the B3LYP/6-31G* level of density functional theory (DFT), has an activation energy of 18.5 kcal/mol. Further, the absorption spectrum of the triplet biradical (3)2, obtained from time-dependent DFT calculations, displays an intense absorption maximum at 670 nm, which is in good agreement with the observed absorption peak at 700 nm. The molecular-orbital analysis of the triplet diradical (3)2 suggests that its long-wavelength absorption involves the transition of the unpaired electron from the comparatively localized benzyl-type HOMO to the extensively conjugated benzoyl-type LUMO. The present experimental and theoretical results strongly support the intervention of a long-lived triplet biradical (3)2 in the photochromism of appropriately substituted dibenzobarrelenes.

摘要

在紫外光照射下,二取代二苯并桶烯衍生物1a在固相变为绿色,并在黑暗中数小时内恢复为其原来的浅黄色。在室温下,脱气苯中有色物种的寿命为37±2秒(褪色的活化能为14.5±0.7千卡/摩尔,对数A为8.92±0.5秒-1),并且对分子氧高度敏感;斯特恩-沃尔默猝灭常数为6.9±0.2×108 M-1 s-1。同样,二取代二苯并桶烯1b和1c在固相暴露于紫外光时呈现粉红色。基于实验和理论证据相结合,有人提出,在光激发下,1a的激发单重态经历快速系间窜越到其三重态,随后进行分子内δ-H提取,生成三重态双自由基中间体(3)2。长时间照射后,2环化生成醇3,最终光产物为烯酮4。在密度泛函理论(DFT)的B3LYP/6-31G*水平计算的三重态势能面上的δ-H提取,活化能为18.5千卡/摩尔。此外,从含时DFT计算得到的三重态双自由基(3)2的吸收光谱,在670 nm处显示出强烈吸收最大值,这与观察到的700 nm处的吸收峰很好地吻合。三重态双自由基(3)2的分子轨道分析表明,其长波长吸收涉及未成对电子从相对局域化的苄基型最高占据分子轨道(HOMO)到广泛共轭的苯甲酰型最低未占分子轨道(LUMO)的跃迁。目前的实验和理论结果有力地支持了长寿命三重态双自由基(3)2参与适当取代的二苯并桶烯的光致变色过程。

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