Mechanisms of Ligand Hyperfine Coupling in Transition-Metal Complexes: σ and π Transmission Pathways

被引:1
作者
Novotny, Jan [1 ,2 ]
Munzarova, Marketa
Marek, Radek [1 ,2 ]
机构
[1] Masaryk Univ, CEITEC Cent European Inst Technol, CZ-62500 Brno, Czech Republic
[2] Masaryk Univ, Fac Sci, Dept Chem, CZ-62500 Brno, Czech Republic
关键词
NMR CHEMICAL-SHIFTS; ELECTRON-PARAMAGNETIC-RESONANCE; SPIN POLARIZATION; EPR; CONSTANTS; METALLODRUGS; PARAMETERS; CHEMISTRY; SPECTRA; VALENCE;
D O I
10.1021/acs.inorgchem.3c04425
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Theoretical interpretation of hyperfine interactions was pioneered in the 1950s-1960s by the seminal works of McConnell, Karplus, and others for organic radicals and by Watson and Freeman for transition-metal (TM) complexes. In this work, we investigate a series of octahedral Ru(III) complexes with aromatic ligands to understand the mechanism of transmission of the spin density from the d-orbital of the metal to the s-orbitals of the ligand atoms. Spin densities and spin populations underlying ligand hyperfine couplings are analyzed in terms of pi-conjugative or sigma-hyperconjugative delocalization vs spin polarization based on symmetry considerations and restricted open-shell vs unrestricted wave function analysis. The transmission of spin density is shown to be most efficient in the case of symmetry-allowed pi-conjugative delocalization, but when the pi-conjugation is partially or fully symmetry-forbidden, it can be surpassed by sigma-hyperconjugative delocalization. Despite a lower spin population of the ligand in sigma-hyperconjugative transmission, the hyperfine couplings can be larger because of the direct involvement of the ligand s-orbitals in this delocalization pathway. We demonstrate a quantitative correlation between the hyperfine couplings of aromatic ligand atoms and the characteristics of the metal-ligand bond modulated by the trans substituent, a hyperfine trans effect.
引用
收藏
页码:8580 / 8592
页数:13
相关论文
共 75 条
[1]   Toward reliable density functional methods without adjustable parameters: The PBE0 model [J].
Adamo, C ;
Barone, V .
JOURNAL OF CHEMICAL PHYSICS, 1999, 110 (13) :6158-6170
[2]   Hyperconjugation [J].
Alabugin, Igor V. ;
Gomes, Gabriel dos Passos ;
Abdo, Miguel A. .
WILEY INTERDISCIPLINARY REVIEWS-COMPUTATIONAL MOLECULAR SCIENCE, 2019, 9 (02)
[3]   Thirty Years of the Drug Candidate NAMI-A and the Myths in the Field of Ruthenium Anticancer Compounds: A Personal Perspective [J].
Alessio, Enzo .
EUROPEAN JOURNAL OF INORGANIC CHEMISTRY, 2017, (12) :1549-1560
[4]   Managing the Computational Chemistry Big Data Problem: The ioChem-BD Platform [J].
Alvarez-Moreno, M. ;
de Graaf, C. ;
Lopez, N. ;
Maseras, F. ;
Poblet, J. M. ;
Bo, C. .
JOURNAL OF CHEMICAL INFORMATION AND MODELING, 2015, 55 (01) :95-103
[5]   ENERGY-ADJUSTED ABINITIO PSEUDOPOTENTIALS FOR THE 2ND AND 3RD ROW TRANSITION-ELEMENTS [J].
ANDRAE, D ;
HAUSSERMANN, U ;
DOLG, M ;
STOLL, H ;
PREUSS, H .
THEORETICA CHIMICA ACTA, 1990, 77 (02) :123-141
[6]  
[Anonymous], A Development of University of Karlsruhe and ForschungszentrumKarlsruhe GmbH
[7]  
[Anonymous], 2016, Gaussian 09
[8]  
Atherton N. M., 1993, PRINCIPLES ELECTRONS
[9]  
Baerends E. J., 2019, ADF2019
[10]  
SCM,Theoretical Chemistry