首页> 外文期刊>The Journal of Chemical Physics >Exploring the light-induced dynamics in solvated metallogrid complexes with femtosecond pulses across the electromagnetic spectrum
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Exploring the light-induced dynamics in solvated metallogrid complexes with femtosecond pulses across the electromagnetic spectrum

机译:电磁谱探讨求解溶剂化的金属微粒复合物中的光诱导动力学

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摘要

Oligonuclear complexes of d(4)-d(7) transition metal ion centers that undergo spin-switching have long been developed for their practical role in molecular electronics. Recently, they also have appeared as promising photochemical reactants demonstrating improved stability. However, the lack of knowledge about their photophysical properties in the solution phase compared to mononuclear complexes is currently hampering their inclusion into advanced light-driven reactions. In the present study, the ultrafast photoinduced dynamics in a solvated [2 x 2] iron(II) metallogrid complex are characterized by combining measurements with transient optical-infrared absorption and x-ray emission spectroscopy on the femtosecond time scale. The analysis is supported by density functional theory calculations. The photocycle can be described in terms of intra-site transitions, where the Fe-II centers in the low-spin state are independently photoexcited. The Franck-Condon state decays via the formation of a vibrationally hot high-spin (HS) state that displays coherent behavior within a few picoseconds and thermalizes within tens of picoseconds to yield a metastable HS state living for several hundreds of nanoseconds. Systematic comparison with the closely related mononuclear complex [Fe(terpy)(2)](2+) reveals that nuclearity has a profound impact on the photoinduced dynamics. More generally, this work provides guidelines for expanding the integration of oligonuclear complexes into new photoconversion schemes that may be triggered by ultrafast spin-switching.
机译:D(4)-D(7)的过渡金属离子中心的寡核络合物长期以来已经为其在分子电子中的实际作用而开发出旋转切换。最近,它们也出现了希望的光学化反应物,证明了改善的稳定性。然而,与单核复合物相比,对溶液阶段中的光物理性质的知识缺乏了解,当前阻碍了它们进入先进的光驱动反应。在本研究中,溶剂化[2×2]铁(II)金属格子复合物中的超快光诱导动力学的特征在于通过在飞秒时间尺度上与瞬态光红外吸收和X射线发射光谱相结合。密度泛函理论计算支持分析。光细胞可以根据现场内转换描述,其中低旋转状态下的Fe-II中心是独立的光透明的。 Franck-Condon状态通过形成振动热的高旋转(HS)状态衰变,该状态显示在几个皮秒内的相干行为,并在几十pic秒内热化,以产生含有几百纳秒的稳定性HS状态。与密切相关的单核复合物[Fe(Terpy)(2)](2+)的系统比较显示,核电对光诱导动力学产生了深远的影响。更一般地,这项工作提供了扩展寡核络合物集成到可以通过超快自旋切换触发的新光电转换方案的指导。

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