Tarannum Ibtesham, Sahu Prem Prakash, Moorthy Shruti, Gupta Shivam, Singh Saurabh Kumar
Computational Inorganic Chemistry Group, Department of Chemistry, Indian Institute of Technology Hyderabad, Kandi, Sangareddy, Telangana, 502284, India.
Department of Chemistry "Ugo Schiff", University of Florence, Via della Lastruccia 3, Sesto Fiorentino, 50019, Italy.
Chem Asian J. 2025 Sep;20(18):e00278. doi: 10.1002/asia.202500278. Epub 2025 Jun 24.
Understanding the nature of actinide-ligand bonding, covalency, and magnetic properties is a burgeoning research topic in the field of actinide chemistry. In the present manuscript, we have thoroughly investigated the electronic structure, magnetic anisotropy of nine [AnCp] complexes (An = Th(III)-Cf(III)) using scalar relativistic density functional theory (SR-DFT) and complete active space self-consistent field (CASSCF) method to shed light on the nature of actinide-ligand covalency, with particular emphasis on the role of 5f versus 6d covalency in the bonding. DFT and CASSCF calculations predict 6d(Th), 5f6d (Pa), and 5f configurations for U-Cf analogues. A range of computational methods, including molecular orbital (MO), natural population analysis (NPA), natural localized molecular orbital analysis (NLMO) analysis, and ab initio ligand field theory (AILFT) were used to elucidate the orbital-driven and energy-driven component in describing the 5f-ligand covalency in [AnCp] complexes. DFT calculations highlight dominant 6d-covalency for earlier actinides, while dominant 5f-covalency in heavier actinides and, importantly, underscores the emergence of energy-driven covalency in delineating trends in the 5f-ligand covalency in [AnCp] complexes. CASSCF calculations with ligand orbitals in active space nicely reproduce the experimental g-shifts and magnetic susceptibility, thereby highlighting the importance of 5f-ligand covalency in describing the magnetic properties of [AnCp] complexes.
理解锕系元素与配体之间的键合性质、共价性和磁性是锕系元素化学领域中一个新兴的研究课题。在本论文中,我们使用标量相对论密度泛函理论(SR-DFT)和完全活性空间自洽场(CASSCF)方法,对九个[AnCp]配合物(An = Th(III)-Cf(III))的电子结构和磁各向异性进行了深入研究,以阐明锕系元素与配体共价性的本质,特别强调5f与6d共价性在键合中的作用。DFT和CASSCF计算预测了U-Cf类似物的6d(Th)、5f6d(Pa)和5f构型。我们使用了一系列计算方法,包括分子轨道(MO)、自然布居分析(NPA)、自然定域分子轨道分析(NLMO)以及从头算配体场理论(AILFT),来阐明在描述[AnCp]配合物中5f-配体共价性时的轨道驱动和能量驱动成分。DFT计算突出了早期锕系元素中占主导的6d-共价性,而较重锕系元素中占主导的是5f-共价性,并且重要的是,强调了能量驱动共价性在描绘[AnCp]配合物中5f-配体共价性趋势方面的出现。在活性空间中包含配体轨道的CASSCF计算很好地重现了实验g位移和磁化率,从而突出了5f-配体共价性在描述[AnCp]配合物磁性性质方面的重要性。