Fluorescence Quenching by Reversible Charge Separation Followed by Ions Recombination and Their Separation Suppressed by Coulomb Attraction

A. Burshtein, A. Doktorov
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引用次数: 0

Abstract

The Stern-Volmer constant is specified for the luminescence quenched by reversible ionization of excited molecules. The exergonic branch of the Rehm-Weller free energy dependence of this constant is known to be a plateau determined by irreversible ionization being under diffusion control. In the endergonic region the ionization is reversible and competes with the irreversible in-cage recombination of ions and their escape from the cage. At strong Coulomb attraction the latter phenomenon is shown to be negligible compared to the former that determines the shape and location of the descending branch of the Rehm-Weller curve. At weaker Coulomb attraction (at higher solvent polarity), this curve turns down at larger endergonicity. The experimental data obtained in solvents of different polarities are put in order and in full accordance with present theory.
可逆电荷分离后离子复合的荧光猝灭及其分离被库仑吸引抑制
施特恩-沃尔默常数被指定为受激分子可逆电离猝灭的发光。该常数的Rehm-Weller自由能依赖的exergonic分支已知是由扩散控制下的不可逆电离决定的平台。在自容区,电离是可逆的,与离子在笼内的不可逆重组和离子从笼中逸出竞争。在强库仑吸引下,后一种现象与决定Rehm-Weller曲线下降分支的形状和位置的前一种现象相比可以忽略不计。在库仑引力较弱时(溶剂极性较高时),自吸性较大时曲线下降。对在不同极性溶剂中得到的实验数据进行了整理,并与现有理论完全一致。
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