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The Influence of Temperature on C153 Steady-State Absorption and Fluorescence Kinetics in Hydrogen Bonding Solvents

机译:温度对氢键键合溶剂中C153稳态吸收和荧光动力学的影响

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摘要

In a recent paper (J Fluoresc (2011) 21:1547–1557) a temperature induced modulation of Coumarin 153 (C153) fluorescence lifetime and quantum yield for the probe dissolved in the polar, nonspecifically interacting 1-chloropropane was reported. This modulation was also observed in temperature dependencies of the radiative and nonradiative rates. Here, we show that the modulation is also observed in another 1-chloroalkane—1-chlorohexane, as well as in hydrogen bonding propionitrile, ethanol and trifluoroethanol. Change in the equilibrium distance between S0 an S1 potential energies surfaces was identified as the source of this modulation. This change is driven by temperature changes. It leads to a modulation of the fluorescence transition dipole moment and it is the primary source of the experimental effects observed. Additionally, we have found that proticity of the solvent induces a rise in the fluorescence transition dipole moment, which leads to a shortening of the fluorescence lifetime. Hydrogen bonds are formed by C153 also with hydrogen accepting solvents like propionitrile. We show that while such bonds do not affect the transition probability, they do change the S0 an S1 energy gap which in turn implies a change in non-radiative transition rate in a similar way as in protic solvents, as well as in the fluorescence spectrum position. Finally, the influence of temperature on the energies of hydrogen bonds formed by C153 when acting as hydrogen donor or acceptor is reported.
机译:在最近的一篇论文中(J Fluoresc(2011)21:1547-1557),报道了温度诱导的香豆素153(C153)荧光寿命的调制和探针溶解在极性非特异性相互作用的1-氯丙烷中的量子产率。在辐射速率和非辐射速率的温度相关性中也观察到这种调制。在这里,我们表明在另一种1-氯烷烃-1-氯己烷中以及氢键合丙腈,乙醇和三氟乙醇中也观察到了这种调节。 S0和S1势能面之间平衡距离的变化被确定为这种调制的来源。这种变化是由温度变化驱动的。它导致荧光跃迁偶极矩的调制,并且是观察到的实验效果的主要来源。另外,我们发现溶剂的质子性引起荧光跃迁偶极矩的增加,这导致荧光寿命的缩短。氢键也是由C153与受氢溶剂(如丙腈)形成的。我们表明,虽然这些键不影响跃迁几率,但它们确实改变了S0和S1的能隙,这反过来意味着非辐射跃迁速率的变化与质子溶剂以及荧光光谱相似。位置。最后,报道了温度对C153用作氢供体或受体时形成的氢键能量的影响。

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