首页> 外文期刊>Journal of the American Chemical Society >Ethyne-Bridged (Porphinato)Zinc(Ⅱ) (Porphinato)Iron(Ⅲ) Complexes: Phenomenological Dependence of Excited-State Dynamics upon (Porphinato)Iron Electronic Structure
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Ethyne-Bridged (Porphinato)Zinc(Ⅱ) (Porphinato)Iron(Ⅲ) Complexes: Phenomenological Dependence of Excited-State Dynamics upon (Porphinato)Iron Electronic Structure

机译:乙炔桥(卟啉)锌(Ⅱ)(卟啉)铁(Ⅲ)配合物:激发态动力学对(卟啉)铁电子结构的现象学依赖性

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摘要

We report the synthesis, spectroscopy, potentiometric properties, and excited-state dynamical studies of 5-[(10,20-di-((4-ethyl ester)methylene-oxy)phenyl)porphinato]zinc(Ⅱ)-[5′-[(10′,20′- di-((4-ethyl ester)methylene-oxy)phenyl)porphinato]iron(?)-chloride]ethyne (PZn-PFe-Cl), along with a series of related supermolecules ([PZn-PFe-(L)_(1,2)]~+ species) that possess a range of metal axial ligation environments (L = pyridine, 4-cyanopyridine, 2,4,6-trimethylpyridine (collidine), and 2,6-dimethylpyridine (2,6-lutidine)). Relevant monomeric [(porphinato)iron-(ligand)_(1,2)]~+ ([PFe(L)_(1,2)]~+) benchmarks have also been synthesized and fully characterized. Ultrafast pump-probe transient absorption spectroscopic experiments that interrogate the initially prepared electronically excited states of [PFe(L)_(1,2)]~+ species bearing nonhindered axial ligands demonstrated subpicosecond-to-picosecond relaxation dynamics to the ground electronic state. Comparative pump-probe transient absorption experiments that interrogate the initially prepared excited states of PZn-PFe-Cl, [PZn-PFe-(py)_2]~+, [PZn-PFe-(4-CN-py)_2]~+, [PZn-PFe-(collidine)]~+, and [PZn-PFe-(2,6-lutidine)]~+ demonstrate that the spectra of all these species are dominated by a broad, intense NIR S_1 → S_n transient absorption manifold. While PZn-PFe-Cl~*, [PZn-PFe-(py)_2]~(+*), and [PZn-PFe-(4-CN-py)_2]~(+*) evince subpicosecond and picosecond time-scale relaxation of their respective initially prepared electronically excited states to the ground state, the excited-state dynamics observed for [PZn-PFe-(2,6-lutidine)]~(+*) and [PZn-PFe-(collidine)]~(+*) show fast relaxation to a [PZn~+-PFe(Ⅱ)] charge-separated state having a lifetime of nearly 1 ns. Potentiometric data indicate that while ΔG_(CS) for [PZn-PFe-(L)_(1,2)]~(+*) species is strongly influenced by the PFe~+ ligation state [ligand (ΔG_(CS)): 4-cyanopyridine (-0.79 eV) < pyridine (-1.04 eV) < collidine (-1.35 eV) < chloride (-1.40 eV); solvent = CH_2Cl_2], the pump-probe transient absorption dynamical data demonstrate that the nature of the dominant excited-state decay pathway is not correlated with the thermodynamic driving force for photoinduced charge separation, but depends on the ferric ion ligation mode. These data indicate that sterically bulky axial ligands that drive a pentacoordinate PFe center and a weak metal axial ligand interaction serve to sufficiently suppress the normally large magnitude nonradiative decay rate constants characteristic of (porphinato)iron(Ⅲ) complexes, and thus make electron transfer a competitive excited-state deactivation pathway.
机译:我们报告了5-[(10,20-二-((4-乙基酯)亚甲基-氧基)苯基)卟啉锌]([5])[5']的合成,光谱学,电位特性和激发态动力学研究。 -[((10',20'-二-((4-乙基酯)亚甲基-氧基)苯基)卟啉]氯化()-氯化物]乙炔(PZn-PFe-Cl),以及一系列相关的超分子([PZn-PFe-(L)_(1,2)]〜+种)具有一系列金属轴向连接环境(L =吡啶,4-氰基吡啶,2,4,6-三甲基吡啶(可力丁)和2,6-二甲基吡啶(2,6-二甲基吡啶)。还合成了相关的单体[(卟啉)铁-(配体)_(1,2)]〜+([PFe(L)_(1,2,]]〜+)基准并进行了充分表征。超快泵浦探针瞬态吸收光谱实验可验证最初制备的带有无阻碍轴向配体的[PFe(L)_(1,2)]〜+物种的电子激发态,其皮基电子态具有亚皮秒至皮秒的松弛动力学。比较泵浦探针瞬态吸收实验,该实验询问PZn-PFe-Cl,[PZn-PFe-(py)_2]〜+,[PZn-PFe-(4-CN-py)_2]〜+的初始激发态,[PZn-PFe-(collidine)]〜+和[PZn-PFe-(2,6-lutidine)]〜+表明,所有这些物质的光谱都被宽广的强烈NIR S_1→S_n瞬态吸收所控制流形。当PZn-PFe-Cl〜*,[PZn-PFe-(py)_2]〜(+ *)和[PZn-PFe-(4-CN-py)_2]〜(+ *)出现在亚皮秒和皮秒时间时分别准备的电子激发态到基态的尺度弛豫,观察到[PZn-PFe-(2,6-lutidine)]〜(+ *)和[PZn-PFe-(可力丁) ]〜(+ *)显示快速弛豫到[PZn〜+ -PFe(Ⅱ)]电荷分离状态,寿命接近1 ns。电位数据表明,尽管[PZn-PFe-(L)_(1,2)]〜(+ *)物种的ΔG_(CS)受PFe〜+结扎状态[配体(ΔG_(CS))强烈影响: 4-氰基吡啶(-0.79 eV)<吡啶(-1.04 eV)<可力丁(-1.35 eV)<氯化物(-1.40 eV);溶剂= CH_2Cl_2],泵浦探针瞬态吸收动力学数据表明,主要的激发态衰变途径的性质与光诱导电荷分离的热力学驱动力无关,而取决于三价铁离子的连接模式。这些数据表明,驱动五坐标PFe中心和弱金属轴向配体相互作用的空间庞大的轴向配体可充分抑制(卟啉)铁(Ⅲ)配合物的通常较大的非辐射衰变速率常数,从而使电子转移。竞争性兴奋态失活途径。

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