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Tracing the Full Bimolecular Photocycle of Iron(Ⅲ)-Carbene Light Harvesters in Electron-Donating Solvents

机译:追踪铁(Ⅲ)铁(Ⅲ)的全分微分子光循环 - 在电子溶剂中的光纤收割机

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摘要

Photoinduced bimolecular charge transfer processes involving the iron(Ⅲ) N-heterocyclic carbene (FeNHC) photosensitizer [Fe(phtmeimb)_2,]~+ (phtmeimb = phenyltris(3-methyl-imidazolin-2-ylidene)borate) and triethylamine as well as N,N-dimethylaniline donors have been studied using optical spectroscopy. The full photocycle of charge separation and recombination down to ultrashort time scales was studied by investigating the excited-state dynamics up to high quencher concentrations. The unconventional doublet ligand-to-metal charge transfer (~2LMCT) photoactive excited state exhibits donor-dependent charge separation rates of up to 1.25 ps~(-1) that exceed the rates found for typical ruthenium-based systems and are instead more similar to results reported for organic sensitizers. The ultrafast charge transfer probed at high electron donor concentrations outpaces the solvent dynamics and goes beyond the classical Marcus electron transfer regime. Poor photoproduct yields are explained by donor-independent, fast charge recombination with rates of ~0.2 ps~(-1), thus inhibiting cage escape and photoproduct formation. This study thus shows that the ultimate bottlenecks for bimolecular photoredox processes involving these FeNHC photosensitizers can only be determined from the ultrafast dynamics of the full photocycle, which is of particular importance when the bimolecular charge transfer processes are not limited by the intrinsic excited-state lifetime of the photosensitizer.
机译:涉及铁(Ⅲ)N-杂环基石(FENHC)光敏剂[Fe(phtmeimb)_2,]〜+(Phtmeimb =苯基三(3-甲基 - 咪唑啉-2-千世)硼酸盐)和三乙胺也是如此的光致作为N,已经使用光谱研究了N-二甲基苯胺供体。通过研究高猝灭剂浓度,研究了电荷分离和重组到超短时间尺度的完整光循环。非常规的双峰配体 - 金属电荷转移(〜2LMCT)光活激励状态表现出高达1.25ps〜(-1)的供体依赖性电荷分离率超过典型的基于钌的系统的速率,而是更相似向有机敏感剂报告的结果。高电子供体浓度探测的超快电荷转移在溶剂动力学上过度,并且超出了经典的Marcus电子转移制度。通过无关的供体,快速电荷重组来解释差的光调节产率差约0.2ps〜(-1),因此抑制笼逸出和光调节形成。因此,该研究表明,涉及这些FENHC光敏剂的双分子摄影毒剂方法的最终瓶颈只能由完全光循环的超空动态确定,当双分子电荷转移过程不受本征激发 - 状态寿命的限制时特别重要光敏剂。

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  • 来源
    《Journal of the American Chemical Society》 |2020年第19期|8565-8569|共5页
  • 作者单位

    Division of Chemical Physics Department of Chemistry and Center for Analysis and Synthesis (CAS) Department of Chemistry Lund University SE-22100 Lund Sweden;

    Division of Chemical Physics Department of Chemistry Lund University SE-22100 Lund Sweden;

    Center for Analysis and Synthesis (CAS) Department of Chemistry Lund University SE-22100 Lund Sweden;

    Center for Analysis and Synthesis (CAS) Department of Chemistry Lund University SE-22100 Lund Sweden;

    Center for Analysis and Synthesis (CAS) Department of Chemistry Lund University SE-22100 Lund Sweden;

    Division of Chemical Physics Department of Chemistry Lund University SE-22100 Lund Sweden;

    Division of Theoretical Chemistry Department of Chemistry Lund University SE-22100 Lund Sweden;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 22:16:43

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