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Ligand-field symmetry effects in Fe(ii) polypyridyl compounds probed by transient X-ray absorption spectroscopy

机译:瞬态X射线吸收光谱法探测Fe(ii)聚吡啶基化合物中的配体场对称效应

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摘要

ltrafast excited-state evolution in polypyridyl Fe(II) complexes is of fundamental interest for understanding the origins of the sub-ps spin-state changes that occur upon photoexcitation of this class of compounds as well as for the potential impact such ultrafast dynamics have on incorporation of these compounds in solar energy conversion schemes or switchable optical storage technologies. We have demonstrated that ground-state and, more importantly, ultrafast time-resolved X-ray absorption methods can offer unique insights into the interplay between electronic and geometric structure that underpins the photo-induced dynamics of this class of compounds. The present contribution examines in greater detail how the symmetry of the ligand field surrounding the metal ion can be probed using these X-ray techniques. In particular, we show that steady-state K-edge spectroscopy of the nearest-neighbour nitrogen atoms reveals the characteristic chemical environment of the respective ligands and suggests an interesting target for future charge-transfer femtosecond and attosecond spectroscopy in the X-ray water window.
机译:聚吡啶基Fe(II)配合物的超快激发态演化对于理解此类化合物光激发后发生的亚ps自旋态变化的起因以及此类超快动力学对其的潜在影响具有重大意义。将这些化合物并入太阳能转换方案或可转换的光存储技术中。我们已经证明,基态(更重要的是超快时间分辨X射线吸收方法)可以为电子和几何结构之间的相互作用提供独特的见解,这些相互作用支撑了这类化合物的光诱导动力学。本贡献更详细地研究了如何使用这些X射线技术探测围绕金属离子的配体场的对称性。特别是,我们表明,最近邻氮原子的稳态K边缘光谱揭示了各个配体的特征化学环境,并为X射线水窗中未来的电荷转移飞秒和阿秒光谱提出了有趣的目标。

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