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混合配体二硫酮 - 二硫醇镍、钯和铂配合物中的超快电子和振动弛豫

Ultrafast electronic and vibrational relaxations in mixed-ligand dithione-dithiolato Ni, Pd, and Pt complexes.

作者信息

Frei Franziska, Rondi Ariana, Espa Davide, Mercuri Maria Laura, Pilia Luca, Serpe Angela, Odeh Ahmad, Van Mourik Frank, Chergui Majed, Feurer Thomas, Deplano Paola, Vlček Antonín, Cannizzo Andrea

机构信息

Institute of Applied Physics, University of Bern, Sidlerstrasse 5, CH-3012 Bern, Switzerland.

出版信息

Dalton Trans. 2014 Dec 21;43(47):17666-76. doi: 10.1039/c4dt01955e.

Abstract

Ultrafast excited-state dynamics of planar Pt, Pd, and Ni dithione-dithiolato complexes were investigated by transient absorption spectroscopy on the femtosecond-picosecond timescale. All studied complexes show a common photobehaviour, although individual kinetics parameters and quantum yields vary with the metal, the dithione ligand and, namely the solvent (DMF, MeCN). Laser pulse irradiation at 800 nm populates the lowest singlet excited state of a dithiolato → dithione charge transfer character, (1)LL'CT. The optically excited state undergoes a solvation-driven sub-picosecond electronic relaxation that enhances the dithione/dithiolato charge separation. The (1)LL'CT state decays with a 1.9-4.5 ps lifetime by two simultaneous pathways: intersystem crossing (ISC) to the lowest triplet state (3)LL'CT and non-radiative decay to the ground state. ISC occurs on a ∼6 ps timescale, virtually independent of the metal, whereas the rate of the non-radiative decay to the ground state decreases on going from Ni (2 ps) to Pd (3 ps) and Pt (∼10 ps). (3)LL'CT is initially formed as a vibrationally excited state. Its equilibration (cooling) takes place on a picosecond timescale and is accompanied by a competitive decay to the ground state. Equilibrated (3)LL'CT is populated with a quantum yield of less than 50%, depending on the metal: Pt > Pd > Ni. (3)LL'CT is long-lived for Pt and Pd (≫500 ps) and short-lived for Ni (∼15 ps). Some of the investigated complexes also exhibit spectral changes due to vibrational cooling of the singlet (2-3 ps, depending on the solvent). Rotational diffusion occurs with lifetimes in the 120-200 ps range. Changing the dithione (Bz2pipdt/(i)Pr2pipdt) as well as dithiolate/diselenolate (dmit/dsit) ligands has only small effects on the photobehavior. It is proposed that the investigated dithione-dithiolato complexes could act as photooxidants (*E(o) ≈ +1.2 V vs. NHE) utilizing their lowest excited singlet ((1)LL'CT), provided that the excited-state electron transfer is ultrafast, competitive with the picosecond decay. On the other hand, the efficiency of any triplet-based processes would be severely limited by the low quantum yield of the triplet population.

摘要

通过飞秒-皮秒时间尺度的瞬态吸收光谱研究了平面铂、钯和镍二硫酮-二硫醇盐配合物的超快激发态动力学。尽管各个动力学参数和量子产率随金属、二硫酮配体以及具体的溶剂(N,N-二甲基甲酰胺、乙腈)而变化,但所有研究的配合物都表现出共同的光行为。800 nm的激光脉冲照射使具有二硫醇盐→二硫酮电荷转移特性的最低单重激发态(1)LL'CT得以形成。光激发态经历溶剂化驱动的亚皮秒电子弛豫,增强了二硫酮/二硫醇盐的电荷分离。(1)LL'CT态通过两条同时发生的途径以1.9 - 4.5 ps的寿命衰减:系间窜越(ISC)到最低三重态(3)LL'CT以及无辐射衰减到基态。ISC发生在约6 ps的时间尺度上,实际上与金属无关,而无辐射衰减到基态的速率从镍(2 ps)到钯(3 ps)再到铂(约10 ps)逐渐降低。(3)LL'CT最初以振动激发态形式形成。其平衡(冷却)在皮秒时间尺度上发生,并伴随着向基态的竞争性衰减。平衡后的(3)LL'CT的填充量子产率小于50%,这取决于金属:铂>钯>镍。(3)LL'CT对于铂和钯是长寿命的(≫500 ps),而对于镍是短寿命的(约15 ps)。一些研究的配合物还由于单重态的振动冷却(2 - 3 ps,取决于溶剂)而表现出光谱变化。旋转扩散的寿命在120 - 200 ps范围内。改变二硫酮(二苯并哌啶二硫醇盐/异丙基哌啶二硫醇盐)以及二硫醇盐/二硒醇盐(二甲基咪唑二硫醇盐/二硒代二硫醇盐)配体对光行为的影响很小。有人提出,所研究的二硫酮-二硫醇盐配合物可以利用其最低激发单重态(1)LL'CT作为光氧化剂(*E⁰≈ +1.2 V 相对于标准氢电极),前提是激发态电子转移是超快的,与皮秒级衰减相竞争。另一方面,任何基于三重态的过程的效率都会受到三重态填充低量子产率的严重限制。

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