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具有可见光可及的最低能量电荷转移激发态的环金属化钴(III)配合物。

Cyclometallated Co(III) Complexes with Lowest-Energy Charge Transfer Excited States Accessible with Visible Light.

作者信息

Burton Spencer T, Lee Gyunhee, Moore Curtis E, Sevov Christo S, Turro Claudia

机构信息

Department of Chemistry and Biochemistry, The Ohio State University, Columbus, Ohio 43214, United States.

出版信息

J Am Chem Soc. 2025 Apr 23;147(16):13315-13327. doi: 10.1021/jacs.4c18299. Epub 2025 Apr 10.

Abstract

The Co(III) complexes, -[Co(ppy)(L)]PF, where ppy = 2-phenylpyridine and L = bpy (2,2'-bipyridine; ), phen (1,10-phenanthroline; ), and DAP (1,12-diazaperylene; ), are reported and their photophysical properties were investigated to evaluate their potential as sensitizers for applications that include solar energy conversion schemes and photoredox catalysis. Calculations show that cyclometallation in the -[Co(ppy)(L)]PF series affords strong Co(dπ)/ppy(π) orbital interactions that result in a Co/ppy(π*) highest occupied molecular orbital (HOMO) and a lowest unoccupied molecular orbital (LUMO) localized on the diimine ligand, L(π*). Complexes exhibit relatively invariant oxidation potentials, whereas the reduction event is dependent on the identity of the diimine ligand, L, consistent with the theoretical predictions. For a broad Co/ppy(π*) → L(π*) metal/ligand-to-ligand charge transfer (ML-LCT) absorption band is observed in CHCN with a maxima at 507 nm, extending beyond 600 nm. Upon excitation of the ML-LCT transition, transient absorption features consistent with the population of a ML-LCT excited state with lifetimes, τ, of 3.0 ps, 4.6 and 42 ps for , and in CHCN respectively are observed. Upon irradiation with 505 nm, is able to reduce methyl viologen (MV), an electron acceptor commonly in photocatalytic schemes. To our knowledge, represents the first heteroleptic molecular Co(III) complex that combines cyclometallation with a diimine ligand with lowest-lying metal-to-ligand charge transfer excited states able to undergo photoinduced charge transfer with low-energy green light. As such, the structural design of represents an important step toward d photosensitizers based on earth abundant metals.

摘要

报道了三价钴配合物 -[Co(ppy)(L)]PF,其中ppy = 2 - 苯基吡啶,L = bpy(2,2'-联吡啶)、phen(1,10 - 菲咯啉)和DAP(1,12 - 二氮苝),并研究了它们的光物理性质,以评估其作为敏化剂在包括太阳能转换方案和光氧化还原催化等应用中的潜力。计算表明,-[Co(ppy)(L)]PF系列中的环金属化作用产生了强烈的Co(dπ)/ppy(π)轨道相互作用,导致Co/ppy(π*)最高占据分子轨道(HOMO)和最低未占据分子轨道(LUMO)定域在二亚胺配体L(π*)上。配合物表现出相对不变的氧化电位,而还原过程则取决于二亚胺配体L的特性,这与理论预测一致。对于 在CHCN中观察到一个宽的Co/ppy(π*) → L(π*)金属/配体到配体电荷转移(ML - LCT)吸收带,其最大值在507 nm,延伸至600 nm以上。在ML - LCT跃迁激发后,分别在CHCN中观察到与ML - LCT激发态布居一致的瞬态吸收特征,其寿命τ分别为3.0 ps、4.6 ps和42 ps。用505 nm光照射时, 能够还原甲基紫精(MV),这是光催化方案中常见的电子受体。据我们所知, 代表了第一个将环金属化与具有最低金属到配体电荷转移激发态且能与低能量绿光发生光诱导电荷转移的二亚胺配体相结合的杂配分子三价钴配合物。因此, 的结构设计代表了朝着基于储量丰富的金属的d光敏化剂迈出的重要一步。

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