Articles producció científicaQuímica Física i Inorgànica

The Role of Vibrational Anharmonicity in the Computational Study of Thermal Spin Crossover

  • Datos identificativos

    Identificador:  imarina:6010708
    Autores:  Wu, Jianfang; Sousa, Carmen; de Graaf, Coen
    Resumen:
    Spin crossover in transition metal complexes can be studied in great detail with computational chemistry. Over the years, the understanding has grown that the relative stability of high-spin (HS) versus low-spin (LS) states is a subtle balance of many factors that all need to be taken into account for a reliable description. Among the different contributions, the zero-point energy (ZPE) and the entropy play key roles. These quantities are usually calculated assuming a harmonic oscillator model for the molecular vibrations. We investigated the impact of including anharmonic corrections on the ZPE and the entropy and indirectly on the critical temperature of spin crossover. As test systems, we used a set of ten Fe(II) complexes and one Fe(III) complex, covering different coordination modes (mono-, bi-, and tri-dentate ligands), decreasing coordination number upon spin crossover, coordination by second- and third-row atoms, and changes in the oxidation state. The results show that the anharmonicity has a measurable effect, but it is in general rather small, and tendencies are not easily recognized. As a conclusion, we put forward that for high precision results, one should be aware of the anharmonic effects, but as long as computational chemistry is still struggling with other larger factors like the influence of the environment and the accurate determination of the electronic energy difference between HS and LS, the anharmonicity of the vibrational modes is a minor concern.
  • Otros:

    Enlace a la fuente original: https://www.mdpi.com/2312-7481/5/3/49
    Referencia de l'ítem segons les normes APA: Wu, Jianfang; Sousa, Carmen; de Graaf, Coen (2019). The Role of Vibrational Anharmonicity in the Computational Study of Thermal Spin Crossover. Magnetochemistry, 5(3), 49-. DOI: 10.3390/magnetochemistry5030049
    Referencia al articulo segun fuente origial: Magnetochemistry. 5 (3): 49-
    DOI del artículo: 10.3390/magnetochemistry5030049
    Año de publicación de la revista: 2019
    Entidad: Universitat Rovira i Virgili
    Versión del articulo depositado: info:eu-repo/semantics/publishedVersion
    Fecha de alta del registro: 2025-02-18
    Autor/es de la URV: De Graaf, Cornelis
    Departamento: Química Física i Inorgànica
    URL Documento de licencia: https://repositori.urv.cat/ca/proteccio-de-dades/
    Tipo de publicación: Journal Publications
    Autor según el artículo: Wu, Jianfang; Sousa, Carmen; de Graaf, Coen
    Acceso a la licencia de uso: https://creativecommons.org/licenses/by/3.0/es/
    Áreas temáticas: Materials science, multidisciplinary, Materials chemistry, Electronic, optical and magnetic materials, Chemistry, physical, Chemistry, inorganic & nuclear, Chemistry (miscellaneous)
    Direcció de correo del autor: coen.degraaf@urv.cat
  • Palabras clave:

    Vibrational frequencies
    Transition-metal-complexes
    Transition temperature
    Systems
    State energetics
    Spin crossover
    Raman-spectroscopy
    Iron complexes
    Ir
    Fe(phen)(2)(ncs)(2)
    Equilibrium
    Dft
    Anharmonicity
    Accurate
    Ab-initio
    Chemistry (Miscellaneous)
    Chemistry
    Inorganic & Nuclear
    Physical
    Electronic
    Optical and Magnetic Materials
    Materials Chemistry
    Materials Science
    Multidisciplinary
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