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对带有芘侧基的钴(III)配合物的光物理性质进行合理化研究。

Rationalizing Photophysics of Co(III) Complexes with Pendant Pyrene Moieties.

作者信息

Toigo Jessica, Tong Ka-Ming, Farhat Rida, Kamal Saeid, Nichols Eva M, Wolf Michael O

机构信息

Department of Chemistry, University of British Columbia, Vancouver, British Columbia V6T 1Z1, Canada.

出版信息

Inorg Chem. 2025 Jan 20;64(2):835-844. doi: 10.1021/acs.inorgchem.4c03689. Epub 2025 Jan 9.

Abstract

Pendant organic chromophores have been used to improve the photocatalytic performance of many metal-based photosensitizers, particularly in first-row metals, by increasing π conjugation in ligands and lowering the energy of the photoactive absorption band. Using a combination of spectroscopic studies and computational modeling, we rationalize the excited state dynamics of a Co(III) complex containing pendant pyrene moieties, , where = 1,1'-(4-(pyren-1-yl)pyridine-2,6-diyl)bis(3-methyl-1-imidazol-3-ium). displays higher visible absorptivity, and blue luminescence from pyrene singlet excited states compared with [ = 1,1'-(pyridine-2,6-diyl)bis(3-methyl-1-imidazol-3-ium)] in which the pyrene moiety is absent. Emissive properties are highly influenced by the metal center, reducing the fluorescence lifetime from 5.9 to 3.5 ns, and a blue shift of 43 nm. The lower energy of the d orbitals in Co(III) compared with Fe(II) drastically affects the character of the excited state, resulting in a mixture of singlet intraligand charge-transfer (ILCT) and ligand-to-metal charge-transfer (LMCT) character. Transient absorption experiments revealed that although the dark triplet intraligand pyrene (IL) state is present, it is not efficiently populated and possesses a short nanosecond-scale lifetime. Instead, triplet metal-centered (MC) states dominate the decay path with a 2.4 ps lifetime, no photoactivity toward singlet oxygen formation or triplet-triplet energy transfer (TTET). This work shows how various factors can influence excited-state dynamics.

摘要

通过增加配体中的π共轭并降低光活性吸收带的能量,悬垂有机发色团已被用于改善许多金属基光敏剂的光催化性能,特别是在第一排金属中。通过光谱研究和计算建模相结合,我们阐明了一种含有芘悬垂基团的Co(III)配合物的激发态动力学,其中 = 1,1'-(4-(芘-1-基)吡啶-2,6-二基)双(3-甲基-1-咪唑-3-鎓)。与不含芘基团的[ = 1,1'-(吡啶-2,6-二基)双(3-甲基-1-咪唑-3-鎓)]相比,显示出更高的可见吸收率和芘单重激发态的蓝色发光。发射特性受到金属中心的高度影响,荧光寿命从5.9 ns降低到3.5 ns,并且蓝移43 nm。与Fe(II)相比,Co(III)中d轨道的能量较低,这极大地影响了激发态的性质,导致单重态配体内电荷转移(ILCT)和配体到金属电荷转移(LMCT)性质的混合。瞬态吸收实验表明,虽然存在暗三重态配体内芘(IL)态,但它没有有效地填充,并且具有短的纳秒级寿命。相反,三重态金属中心(MC)态以2.4 ps的寿命主导衰变路径,对单线态氧形成或三重态-三重态能量转移(TTET)没有光活性。这项工作展示了各种因素如何影响激发态动力学。

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