Electronic structures and magnetic/optical properties of metal phthalocyanine complexes

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Abstract

Electronic structures and magnetic / optical properties of metal phthalocyanine complexes were studied by quantum calculations using density functional theory. Effects of central metal and expansion of π orbital on aromatic ring as conjugation system on the electronic structures, magnetic, optical properties and vibration modes of infrared and Raman spectra of metal phthalocyanines were investigated. Electron and charge density distribution and energy levels near frontier orbital and excited states were influenced by the deformed structures varied with central metal and charge. The magnetic parameters of chemical shifts in 13C-nuclear magnetic resonance (13C-NMR), principle g-tensor, A-tensor, V-tensor of electric field gradient and asymmetry parameters derived from the deformed structures with magnetic interaction of nuclear quadruple interaction based on electron and charge density distribution with a bias of charge near ligand under crystal field.

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Baba, S., Suzuki, A., & Oku, T. (2016). Electronic structures and magnetic/optical properties of metal phthalocyanine complexes. In AIP Conference Proceedings (Vol. 1709). American Institute of Physics Inc. https://doi.org/10.1063/1.4941211

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