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Solvent tunable photophysics of acridone: a quantum chemical perspective

机译:吖啶酮的溶剂可调谐光学药物:量子化学视角

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High-level electronic structure methods and quantum chemistry programs have been employed for a thorough investigation of the photophysics of acridone in isolated and solvated states. A kaleidoscope of photophysical behavior results by varying the medium in which acridone finds itself. With the computed intersystem crossing rate constants of the order of 10(11) s(-1) in vacuum, the photoexcited species acts as an effective triplet sensitizer. In polar, aprotic media, the radiationless decay processes for the photoexcited singlet state are still predominant, however, a delayed fluorescence may also be observed. Such delayed fluorescence comes into play due to the near degeneracy of the (1)(pi(H)pi(L)*) and (3)(n(O)pi(L)*) electronic states in such a solvent. As the polarity, as well as the proticity of the solvent increases, the energy shifts experienced by the involved electronic states cause the photoexcited molecule to relax primarily via fluorescence emission to the ground state with a rate constant of the order of about 10(7) s(-1). In such solvents, acridone is a good fluorescence marker. Hence, tuning the polarity and proticity of the solvent should turn acridone into a dark (triplet formation) or a bright (fluorescence) sensitizer.
机译:高层次的电子结构方法和量子化学程序已经用于吖啶酮的分离和溶剂化状态光物理彻查。通过改变在该吖啶酮所处的介质的光物理行为结果的万花筒。用的10(11)的顺序计算出的系间窜越速率常数S(-1)在真空中,光激发的物种作为一个有效的三线态敏化剂。在极性的,非质子传递介质为无辐射衰变过程光激发单重态仍然占主导地位,但是,延迟荧光也可观察到。这种延迟荧光进场由于(1)(PI(H)PI(L)*)和(3)(N(O)PI(L)*)在这种溶剂的电子态的近简并性。极性,以及的溶剂增加质子性,能量转移经历由所涉及的电子态的原因的光激发的分子通过荧光发射主要放松到基态具有大约10级的速率常数(7) S(-1)。在这样的溶剂中,吖啶酮是一种良好的荧光标记物。因此,调整溶剂的极性和质子性应该把吖啶酮成为暗(三重峰形成)或亮(荧光)增感剂。

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  • 来源
    《RSC Advances 》 |2016年第22期| 共8页
  • 作者单位

    Univ Dusseldorf Inst Theoret &

    Computat Chem Univ Str 1 D-40225 Dusseldorf Germany;

    Univ Dusseldorf Inst Theoret &

    Computat Chem Univ Str 1 D-40225 Dusseldorf Germany;

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  • 正文语种 eng
  • 中图分类 化学 ;
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