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首页> 外文期刊>The Journal of Chemical Physics >The photophysics of all-trans polyenes from ttbP5, a nonphotolabile pentaene
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The photophysics of all-trans polyenes from ttbP5, a nonphotolabile pentaene

机译:ttbP5(一种非光不稳定的戊烯)中的全反式多烯的光物理

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摘要

The all-trans pentaene, 3,12-di(tert-butyl)-2,2,13,13-tetramethyl-3,5,7,9,11-tetradecapentaene (ttbP5) fluoresces in two different regions of the visible spectrum. It produces an extremely weak emission in the gas phase that can also be detected in the condensed phase; such an emission exhibits a negligible Stokes shift with respect to the 1Ag -> 1Bu absorption transition and can in principle be assigned to the 1Bu -> 1Ag emission of the compound. ttbP5 also exhibits a second fluorescence emission at approximately 520 nm in both the gas phase and the condensed phase. The emission in the condensed phase increases in strength and structure, with no change in spectral position, as the solvent viscosity increases by effect of the solution temperature being lowered. The spectral behavior of this pentaene (ttbP5) is different enough from that reported [J. Catalan , J. Chem. Phys. 128, 104504 (2008)] for its tetraene counterpart (ttbP4) to warrant a separate analysis in order to facilitate a better understanding of the way the photophysics of these polyenes changes as their chain is lengthened. (c) 2008 American Institute of Physics.
机译:全反式戊烯,3,12-二(叔丁基)-2,2,13,13-四甲基-3,5,7,9,11-四十七碳烯(ttbP5)在可见光谱的两个不同区域发出荧光。它在气相中产生极弱的发射,在冷凝相中也可以检测到。这种发射相对于1Ag→1Bu吸收跃迁的斯托克斯位移可以忽略不计,并且原则上可以归因于化合物的1Bu→1Ag发射。 ttbP5在气相和冷凝相中均在约520 nm处显示第二荧光发射。冷凝相的发射强度和结构增加,而光谱位置没有变化,这是因为通过降低溶液温度的作用溶剂粘度增加了。该戊烯(ttbP5)的光谱行为与已报道的[J.加泰罗尼亚语,化学杂志。物理128,104504(2008)]对其四烯对应物(ttbP4)进行单独分析,以便更好地理解这些多烯的光物理随着链的延长而改变的方式。 (c)2008年美国物理研究所。

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