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Upconverted emission from pyrene and di-tert-butylpyrene using Ir(ppy)(3) as triplet sensitizer

机译:使用Ir(ppy)(3)作为三重态敏化剂从pyr和二叔丁基py上转换的发射

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Metal-to-ligand charge-transfer sensitized upconverted fluorescence in noncovalent triplet energy transfer assemblies is investigated using Ir(ppy)(3) as the sensitizer (ppy = 2-phenylpyridine) and pyrene or 3,8-di-tert-butylpyrene as the triplet acceptor/annihilator. Upconverted singlet fluorescence from pyrene or 3,8-di-tert-butylpyrene resulting from triplet-triplet annihilation (TTA) is observed following selective excitation of Ir( ppy)(3) in deaerated dichloromethane solutions using 450-nm laser pulses. In both systems, the TTA process is confirmed by the near quadratic dependence of the upconverted fluorescence intensity on incident light power, measured by integrating the upconverted delayed fluorescence kinetic traces as a function of incident excitation power. At the relatively high concentrations of pyrene that were utilized, pyrene excimer formation was detected by its characteristic broad emission centered near 470 nm. In essence, selective excitation of Ir( ppy) 3 ultimately resulted in the simultaneous sensitization of both singlet pyrene and pyrene excimers, and the latter degrades the energy stored in the pyrene singlet excited state. Furthermore, in the case of di-tert-butylpyrene/Ir(ppy)(3), the formation of excimers is successfully blocked because of the presence of the sterically hindering tert-butyl groups. The current work demonstrates that sensitized TTA is indeed accessible to chromophore systems beyond those previously reported, suggesting the generality of the approach.
机译:使用Ir(ppy)(3)作为敏化剂(ppy = 2-苯基吡啶)和pyr或3,8-二叔丁基py作为非共价三重态能量转移组件中的金属到配体电荷转移敏化的上转换荧光三元组接受者/歼灭者。在使用450 nm激光脉冲在脱气二氯甲烷溶液中选择性激发Ir(ppy)(3)之后,观察到了由三重三重态an灭(TTA)导致的pyr或3,8-二叔丁基py的上转换单线荧光。在这两个系统中,TTA过程均由上转换的荧光强度对入射光功率的近似二次依赖性确定,该积分是通过将上转换的延迟荧光动力学迹线与入射激发功率的函数进行积分来测量的。在使用相对较高浓度的pyr时,by集中在470 nm附近,具有特征性的宽发射,可以检测出exc准分子的形成。本质上,Ir(ppy)3的选择性激发最终导致单线态pyr和pyr准分子的同时敏化,并且后者降低了the单线态激发态下存储的能量。此外,在二叔丁基py / Ir(ppy)(3)的情况下,由于存在空间上受阻的叔丁基,成功地阻止了准分子的形成。目前的工作表明,发色团系统确实可以利用敏化的TTA,而以前报道的却不多,这表明该方法具有普遍性。

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