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溶液中单-和双(有机膦)金(I)萘衍生物中的亚皮秒系间交叉。

Subpicosecond intersystem crossing in mono- and di(organophosphine)gold(I) naphthalene derivatives in solution.

机构信息

Department of Chemistry and Center for Chemical Dynamics, Case Western Reserve University, Cleveland, Ohio 44106, USA.

出版信息

J Am Chem Soc. 2012 Sep 12;134(36):14808-17. doi: 10.1021/ja303592q. Epub 2012 Aug 28.

DOI:10.1021/ja303592q
PMID:22909171
Abstract

Femtosecond-to-microsecond broadband transient absorption experiments are reported for Cy(3)PAu(2-naphthyl) (1), (Cy(3)PAu)(2)(2,6-naphthalenediyl) (2), and (Cy(3)PAu)(2)(2,7-naphthalenediyl) (3), where Cy = cyclohexyl. Global and target analyses of the data, based on a sequential kinetic model, reveal four spectral components. These components are assigned to (1) excited state absorption (ESA) of the ligand-centered S(1) state; (2) ESA of a receiver ligand-to-metal or metal-to-ligand charge transfer triplet state (τ(1) ≤ 300 fs); (3) ESA of the vibrationally excited, ligand-centered T(1) state (τ(3) = 7-10 ps); and (4) ESA of the relaxed T(1) state. Intersystem crossing (ISC) occurs in hundreds of femtoseconds, while internal conversion (IC) in the triplet manifold is slow (τ(2) ≈ 2 ps). The relaxed T(1) state shows biphasic decay kinetics in 2 and 3 with lifetimes of hundreds of picoseconds and hundreds of nanoseconds in air-saturated conditions, while only monophasic decay is observed in 1 under identical conditions. The primary decay pathway of the T(1) state is assigned to quenching by O(2), while the secondary channel is tentatively assigned to self-quenching or triplet-triplet annihilation. The ISC rate in 1 is not modulated significantly by the incorporation of a second heavy-atom group effecter. Instead, the position at which the second Au(I)-phosphine group is attached plays a noticeable role in the ISC rate, showing a 3-fold decrease in that of 2 compared to that of 3. The results challenge the conventional view that the rate of IC is larger than that of ISC, lending further support to the emerging kinetic model proposed for other transition-metal complexes. Gold(I) now joins the exclusive group of transition metals known to form organometallic complexes exhibiting excited-state nonequilibrium dynamics.

摘要

报道了 Cy(3)PAu(2-萘基)(1)、(Cy(3)PAu)(2)(2,6-萘基)(2)和(Cy(3)PAu)(2)(2,7-萘基)(3)的飞秒至微秒宽带瞬态吸收实验,其中 Cy = 环己基。基于顺序动力学模型对数据进行的全局和目标分析揭示了四个光谱分量。这些分量被分配给(1)配体中心 S(1)态的激发态吸收(ESA);(2)受体配体-金属或金属-配体电荷转移三重态(τ(1)≤300 fs)的 ESA;(3)振动激发的配体中心 T(1)态(τ(3)=7-10 ps)的 ESA;和(4)松弛的 T(1)态的 ESA。体系间交叉(ISC)在数百飞秒内发生,而三重态的内转换(IC)很慢(τ(2)≈2 ps)。在空气饱和条件下,松弛的 T(1)态在 2 和 3 中表现出双相衰减动力学,寿命为数百皮秒和数百纳秒,而在相同条件下,1 中仅观察到单相衰减。T(1)态的主要衰减途径被分配为被 O(2)猝灭,而次要通道被暂定分配为自猝灭或三重态-三重态湮灭。ISC 速率在 1 中没有因包含第二个重原子基团效应物而显著调节。相反,第二个 Au(I)-膦基团的位置在 ISC 速率中起着显著的作用,与 3 相比,2 的 ISC 速率降低了 3 倍。结果挑战了传统观点,即 IC 的速率大于 ISC 的速率,为其他过渡金属配合物提出的新兴动力学模型提供了进一步支持。金(I)现在加入了已知形成具有激发态非平衡动力学的有机金属配合物的过渡金属的独家小组。

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