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通过配体衍生化调节四价铈配合物的电子性质

Tuning the Electronic Properties of Tetravalent Cerium Complexes via Ligand Derivatization.

作者信息

Pérez Bedwell Georgilett, Suryadevara Nithin, Qi Zhibo, Gable Robert W, Bencok Peter, Baker Michael L, Boskovic Colette

机构信息

School of Chemistry, University of Melbourne, Parkville, Victoria 3010, Australia.

Department of Chemistry, The University of Manchester, Manchester M13 9PL, U.K.

出版信息

Inorg Chem. 2025 Apr 7;64(13):6519-6530. doi: 10.1021/acs.inorgchem.4c05371. Epub 2025 Mar 24.

Abstract

Molecular cerium complexes are of interest due to their remarkable redox and photophysical properties. We have investigated the ligand tunability of the electronic structure and properties of cerium(IV) complexes with functionalized tetradentate NO-donor ligands: [Ce(L)] , [Ce(L)] and [Ce(L)] (), where HL = bis(2-hydroxy-3,5-di--butylbenzyl)(2-pyridylmethyl)amine, HL = bis(2-hydroxybenzyl)(2-pyridylmethyl)amine and HL = bis(2-hydroxy-5-nitrobenzyl)(2-pyridylmethyl)amine. These compounds all exhibit a quasi-reversible one-electron reduction to cerium(III), with the redox potential correlating with the electron donor-acceptor characteristics of the ligand substituents. This correlation is rationalized by energy stabilization of the HOMO, as determined by density functional theory calculations, and is consistent with arene π → Ce 4* ligand-to-metal charge transfer bands. The L-edge XANES exhibits minimal variation in Ce 4 occupation for the three compounds, which suggests that the covalent character and composition of the ground-state character do not vary significantly across the series. However, M-edge XAS shows charge transfer satellites that subtly differ in shape and energy, indicating small distinctions in ligand-to-metal charge transfer for the compounds, consistent with small differences in temperature-independent magnetism. The ability to modulate the redox and optical properties of cerium complexes through ligand derivatization highlights the potential for customizable molecular cerium catalysts and photocatalysts.

摘要

分子铈配合物因其卓越的氧化还原和光物理性质而备受关注。我们研究了具有功能化四齿NO供体配体的铈(IV)配合物:[Ce(L)]、[Ce(L)]和[Ce(L)]()的电子结构和性质的配体可调性,其中HL = 双(2-羟基-3,5-二叔丁基苄基)(2-吡啶甲基)胺、HL = 双(2-羟基苄基)(2-吡啶甲基)胺和HL = 双(2-羟基-5-硝基苄基)(2-吡啶甲基)胺。这些化合物均表现出向铈(III)的准可逆单电子还原,氧化还原电位与配体取代基的电子供体-受体特性相关。这种相关性通过密度泛函理论计算确定的HOMO能量稳定化得到合理解释,并且与芳烃π→Ce 4*配体到金属的电荷转移带一致。L边XANES显示这三种化合物在Ce 4占据上的变化最小,这表明基态特征的共价性质和组成在整个系列中没有显著变化。然而,M边XAS显示出形状和能量略有不同的电荷转移卫星峰,表明这些化合物在配体到金属的电荷转移方面存在细微差异,这与温度无关磁性的微小差异一致。通过配体衍生化调节铈配合物的氧化还原和光学性质的能力突出了可定制分子铈催化剂和光催化剂的潜力。

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