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首页> 外文期刊>Journal of Applied Physics >Saturation of Absorption and Fluorescence in Solutions of Phthalocyanines
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Saturation of Absorption and Fluorescence in Solutions of Phthalocyanines

机译:酞菁溶液中的吸收和荧光饱和

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摘要

Lifetimes of the excited states of phthalocyanines are studied by the irradiation of solutions with a Q‐switched ruby laser. By detailed measurements of the saturation of fluorescence and absorption with increasing‐pulse laser power, the radiative and the nonradiative lifetimes of S1 as well as the time constants for the S1 → T1 and T1 → S0 transitions are determined. The transition between the ground state and the first excited singlet state in the metal‐free as well as the metallophthalocyanine saturates at laser pulse flux power densities of 0.1 to 0.15 MW/cm2. A complete transition of the molecular system from a ground state, S0, into a triplet state, T1, is observed in the case of the metal‐free phthalocyanine H2Pc. The triplet state has a relaxation time to the ground state of 1.0 μsec at 300°K and 150 μsec at 77°K. The absence of fluorescence in VOPc and CuPc implies that a third state also is involved in the saturation of the absorption of the metallophthalocyanines. In these solutions, the saturation of absorption recovers with a relaxation time of less than 20 nsec. All the data obtained at room temperature is consistent with a three energy‐level model. The lifetime of the first excited singlet state, S1, is determined as ∼2.0 nsec for all Pc''s. The radiative lifetime of S1 and the S1 → T1 intersystem crossing time for H2Pc are estimated from the measurements to be about 6 and 10 nsec, respectively.
机译:通过用Q开关红宝石激光器照射溶液来研究酞菁激发态的寿命。通过详细测量随着脉冲激光功率增加的荧光和吸收的饱和度,可以确定S1的辐射寿命和非辐射寿命以及S1→T1和T1→S0跃迁的时间常数。在无金属以及金属酞菁中,基态和第一个激发单重态之间的过渡在激光脉冲通量功率密度为0.1到0.15 MW / cm2时达到饱和。在无金属酞菁H2Pc的情况下,观察到分子系统从基态S0完全转变为三重态T1。三重态到基态的弛豫时间在300°K下为1.0μsec,在77°K下为150μsec。 VOPc和CuPc中没有荧光,这意味着第三态也参与了金属酞菁吸收的饱和。在这些解决方案中,吸收的饱和度以小于20纳秒的松弛时间恢复。在室温下获得的所有数据均与三能级模型一致。对于所有Pc,第一激发单重态S1的寿命确定为约2.0纳秒。根据测量,S1的辐射寿命和H2Pc的S1→T1系统间穿越时间分别约为6纳秒和10纳秒。

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  • 来源
    《Journal of Applied Physics 》 |1966年第13期| 共9页
  • 作者单位

    RCA Laboratories, Radio Corporation of America, Princeton, New Jersey;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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