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Stark Absorption Study of Perylene Doped in a Poly (Methyl Methacrylate) Polymer Film at Different Concentrations

机译:不同浓度下聚(甲基丙烯酸甲酯)聚合物膜掺杂掺杂的Perark吸收研究

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In this article, electric field modulated absorption (Stark absorption, SA) study of perylene doped in a poly (methyl methacrylate) (PMMA) polymer film at the concentrations of 1.0 mol%, 2.0 mol% and 3.0 mol% is presented. The field effects on the absorption spectra were found to originate mostly from the Stark shift induced by a change in molecular polarizability between the ground and excited states. The analyses of SA spectra with the aid of Liptay formalism yielded essentially the same magnitude of the average change in molecular polarizability (Δα), evaluated for the Ssub0/sub - Ssub1/sub transition, for all the concentrations. This finding implies that Δα of perylene molecule doped in a PMMA film does not depend on concentration. Moreover, the yielded positive Δα for both the preparations implies that SA spectroscopy is an essential technique to probe spectroscopically that perylene possesses larger molecular polarizability in the excited states than in the ground state.
机译:在本文中,介绍了在浓度为1.0mol%,2.0mol%和3.0mol%的聚(甲基丙烯酸甲酯)(PMMA)聚合物膜中掺杂在聚(甲基丙烯酸甲酯)(PMMA)聚合物膜上的掺杂掺杂的电场调制的吸收(STARK吸收,SA)研究。发现对吸收光谱的现场效果主要来自地面和激发态之间的分子极化变化诱导的血迹变化。借助于锂替换形式的SA光谱的分析基本相同的分子极化性(Δα)的平均变化相同,为S 0 - > s 1 评价过渡,所有浓度。该发现意味着在PMMA膜中掺杂掺杂的Perylene分子的Δα不依赖于浓度。此外,对于两种制剂的所产生的阳性Δα意味着SA光谱是探测光谱上的基本技术,即Perylene在激发态中具有比在地状态中具有更大的分子极化性。

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