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顺磁性化合物中M-L键性质的定量及化学直观评估:EDA-NOCV理论在自旋交叉配合物中的应用

Quantitative and Chemically Intuitive Evaluation of the Nature of M-L Bonds in Paramagnetic Compounds: Application of EDA-NOCV Theory to Spin Crossover Complexes.

作者信息

Bondì Luca, Garden Anna L, Jerabek Paul, Totti Federico, Brooker Sally

机构信息

Department of Chemistry and, MacDiarmid Institute of Advanced Materials and Nanotechnology, University of Otago, PO Box 56, Dunedin, 9054, New Zealand.

Department of Chemistry "Ugo Schiff" and INSTM Research Unit, University of Florence, 50019, Sesto Fiorentino, Italy.

出版信息

Chemistry. 2020 Oct 27;26(60):13677-13685. doi: 10.1002/chem.202002146. Epub 2020 Sep 24.

Abstract

To improve understanding of M-L bonds in 3d transition metal complexes, analysis by energy decomposition analysis and natural orbital for chemical valence model (EDA-NOCV) is desirable as it provides a full, quantitative and chemically intuitive ab initio description of the M-L interactions. In this study, a generally applicable fragmentation and computational protocol was established and validated by using octahedral spin crossover (SCO) complexes, as the transition temperature (T ) is sensitive to subtle changes in M-L bonding. Specifically, EDA-NOCV analysis of Fe-N bonds in five [Fe (L ) (NCBH ) ], in both low-spin (LS) and paramagnetic high-spin (HS) states led to: 1) development of a general, widely applicable, corrected M+L fragmentation, tested against a family of five LS Fe (L ) complexes; this confirmed that three L are stronger ligands (ΔE =-370 kcal mol ) than 2 L +2 NCBH (=-335 kcal mol ), as observed. 2) Analysis of Fe-L bonding on LS→HS, reveals more ionic (ΔE ) and less covalent (ΔE ) character (ΔE :ΔE 55:45 LS→64:36 HS), mostly due to a big drop in σ (ΔE ↓50 %; -310→-145 kcal mol ), and a drop in π contributions (ΔE ↓90 %; -30→-3 kcal mol ). 3) Strong correlation of observed T and ΔE , for both LS and HS families (R =0.99 LS, R =0.95 HS), but no correlation of T and ΔΔE (LS-HS) (R =0.11). Overall, this study has established and validated an EDA-NOCV protocol for M-L bonding analysis of any diamagnetic or paramagnetic, homoleptic or heteroleptic, octahedral transition metal complex. This new and widely applicable EDA-NOCV protocol holds great promise as a predictive tool.

摘要

为了更好地理解3d过渡金属配合物中的M-L键,采用能量分解分析和化学价自然轨道模型(EDA-NOCV)进行分析是很有必要的,因为它能提供关于M-L相互作用完整、定量且具有化学直观性的从头算描述。在本研究中,通过使用八面体自旋交叉(SCO)配合物建立并验证了一种普遍适用的碎片化和计算方案,因为转变温度(T)对M-L键的细微变化很敏感。具体而言,对五个[Fe(L)(NCBH)]在低自旋(LS)和顺磁性高自旋(HS)状态下的Fe-N键进行EDA-NOCV分析得到:1)开发了一种通用、广泛适用的校正M+L碎片化方法,并针对五个LS Fe(L)配合物家族进行了测试;这证实了三个L是比2L + 2NCBH更强的配体(ΔE = -370 kcal·mol),正如所观察到的那样。2)对LS→HS过程中Fe-L键的分析表明,离子性(ΔE)增强,共价性(ΔE)减弱(ΔE:ΔE 55:45 LS→64:36 HS),这主要是由于σ键大幅下降(ΔE下降50%;-310→-145 kcal·mol)以及π键贡献下降(ΔE下降90%;-30→-3 kcal·mol)。3)对于LS和HS家族,观察到的T与ΔE之间存在强相关性(R = 0.99 LS,R = 0.95 HS),但T与ΔΔE(LS-HS)之间不存在相关性(R = 0.11)。总体而言,本研究建立并验证了一种用于任何抗磁性或顺磁性、均配或异配八面体过渡金属配合物M-L键分析的EDA-NOCV方案。这种新的且广泛适用的EDA-NOCV方案作为一种预测工具具有很大的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a381/7702084/f4ebdd756388/CHEM-26-13677-g001.jpg

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