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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Probing Photoinduced Intersystem Crossing by Two-Color, Double Resonance Single Molecule Spectroscopy
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Probing Photoinduced Intersystem Crossing by Two-Color, Double Resonance Single Molecule Spectroscopy

机译:通过双色双共振单分子光谱探测光诱导的系统间交叉

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摘要

A photoinduced effect on the rate of reverse intersystem crossing (isc) in single sulforhodamine 101 (SR101) molecules has been observed using a novel two-color, multipulse, double resonance technique. The observed photoinduced intersystem crossing can be modeled by a four-electronic-state scheme (T_1 → T_N → S_1 → S_0) in which one of the excitation colors is in resonance with the S_0 → S_1 transition and the other is resonant with the T_1 → T_N transition. Synchronous averaging over many cycles of the two-color pulsed excitation experiment provides transient data that can be analyzed in a straightforward manner that is analogous to a conventional chemical kinetics experiment. Separate single color pulsed experiments were used to evaluate whether single color excitation (543 nm) alone could be responsible for photoinduced reverse isc (as previously reported for other molecules). However, results from the single color, pulsed excitation experiments show no evidence of this effect for two dyes, DiI and SR101.
机译:使用新型的双色,多脉冲,双共振技术,已观察到了单个磺基若丹明101(SR101)分子对反向系统间交叉(isc)速率的光诱导效应。可以通过四电子状态方案(T_1→T_N→S_1→S_0)对观察到的光诱导的系统间交叉建模,其中一种激发颜色与S_0→S_1跃迁共振,而另一种激发颜色与T_1→共振。 T_N过渡。在双色脉冲激发实验的多个周期上进行同步平均,可以提供瞬态数据,可以以类似于常规化学动力学实验的直接方式对其进行分析。使用单独的单色脉冲实验来评估单独的单色激发(543 nm)是否可能引起光诱导的反向等离子(如先前对其他分子的报道)。但是,单色脉冲激发实验的结果表明,没有证据表明DiI和SR101这两种染料具有这种作用。

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