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量子动力学揭示的[Fe(2,2'-联吡啶)]中的超快自旋交叉光化学机制

Ultrafast Spin Crossover Photochemical Mechanism in [Fe(2,2'-bipyridine)]] Revealed by Quantum Dynamics.

作者信息

Alías-Rodríguez Marc, Bhattacharyya Swarnendu, Huix-Rotllant Miquel

机构信息

Aix-Marseille Univ, CNRS, ICR, Marseille 13013, France.

出版信息

J Phys Chem Lett. 2023 Sep 28;14(38):8571-8576. doi: 10.1021/acs.jpclett.3c02201. Epub 2023 Sep 19.

Abstract

Photoexcitation of [Fe(2,2'-bipyridine)] induces a subpicosecond spin crossover transformation from a low-spin singlet to a high-spin quintet state. The mechanism involves metal-centered (MC) and metal-ligand charge transfer (MLCT) triplet intermediates, but their individual contributions to this efficient intersystem crossing have been object of debate. Employing quantum wavepacket dynamics, we show that MC triplets are catalyzing the transfer to the high-spin state. This photochemical pathway is made possible thanks to bipyridine stretching vibrations, facilitating the conversion between the MLCT bands to such MC triplets. We show that the lifetime of the MLCT states can be increased to tens of picoseconds by breaking the conjugation between pyridine units, which increases the energetic gap between MLCT and MC states. This opens the route for the design of new chelating ligands inducing long-lived MLCT states in iron complexes.

摘要

[Fe(2,2'-联吡啶)]的光激发诱导了从低自旋单重态到高自旋五重态的亚皮秒自旋交叉转变。该机制涉及以金属为中心(MC)和金属-配体电荷转移(MLCT)三重态中间体,但它们对这种高效系间窜越的各自贡献一直存在争议。利用量子波包动力学,我们表明MC三重态催化了向高自旋态的转移。由于联吡啶的伸缩振动,这种光化学途径成为可能,促进了MLCT能带向此类MC三重态的转化。我们表明,通过打破吡啶单元之间的共轭,可以将MLCT态的寿命延长至几十皮秒,这增加了MLCT和MC态之间的能量间隙。这为设计在铁配合物中诱导长寿命MLCT态的新型螯合配体开辟了道路。

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