Magra Kevin, Domenichini Edoardo, Francés-Monerris Antonio, Cebrián Cristina, Beley Marc, Darari Mohamed, Pastore Mariachiara, Monari Antonio, Assfeld Xavier, Haacke Stefan, Gros Philippe C
Université de Lorraine , CNRS, L2CM , F-57000 Metz , France.
Université de Strasbourg , CNRS, IPCMS , F-67000 Strasbourg , France.
Inorg Chem. 2019 Apr 15;58(8):5069-5081. doi: 10.1021/acs.inorgchem.9b00138. Epub 2019 Apr 5.
The control of photophysical properties of iron complexes and especially of their excited states decay is a great challenge in the search for sustainable alternatives to noble metals in photochemical applications. Herein we report the synthesis and investigations of the photophysics of mer and fac iron complexes bearing bidentate pyridyl-NHC ligands, coordinating the iron with three ligand-field-enhancing carbene bonds. Ultrafast transient absorption spectroscopy reveals two distinct excited state populations for both mer and fac forms, ascribed to the populations of the T and the T states, respectively, which decay to the ground state via parallel pathways. We find 3-4 ps and 15-20 ps excited-state lifetimes, with respective amplitudes depending on the isomer. The longer lifetime exceeds the one reported for iron complexes with tridentate ligands analogues involving four iron-carbene bonds. By combining experimental and computational results, a mechanism based on the differential trapping of the triplet states in spin-crossover regions is proposed for the first time to explain the impact of the fac/ mer isomerism on the overall excited-state lifetimes. Our results clearly highlight the impact of bidentate pyridyl-NHC ligands on the photophysics of iron complexes, especially the paramount role of fac/ mer isomerism in modulating the overall decay process, which can be potentially exploited in the design of new Fe(II)-based photoactive compounds.
在光化学应用中寻找贵金属的可持续替代物时,控制铁配合物的光物理性质,尤其是其激发态衰变,是一项巨大的挑战。在此,我们报告了带有双齿吡啶基-NHC配体的面式和经式铁配合物的合成及其光物理性质研究,这些配体通过三个增强配体场的卡宾键与铁配位。超快瞬态吸收光谱揭示了面式和经式两种形式都有两个不同的激发态种群,分别归因于T态和T态种群,它们通过平行途径衰变到基态。我们发现激发态寿命分别为3 - 4皮秒和15 - 20皮秒,各自的振幅取决于异构体。较长的寿命超过了报道的具有涉及四个铁-卡宾键的三齿配体类似物的铁配合物的寿命。通过结合实验和计算结果,首次提出了一种基于三重态在自旋交叉区域的差异捕获的机制,以解释面式/经式异构对整体激发态寿命的影响。我们的结果清楚地突出了双齿吡啶基-NHC配体对铁配合物光物理性质的影响,特别是面式/经式异构在调节整体衰变过程中的关键作用,这在新型基于Fe(II)的光活性化合物的设计中可能具有潜在应用价值。