Literature DB >> 26580912

Accuracy of embedded fragment calculation for evaluating electron interactions in mixed valence magnetic systems: study of 2e-reduced lindqvist polyoxometalates.

Nicolas Suaud1, Xavier López2, Nadia Ben Amor1, Nuno A G Bandeira2, Coen de Graaf2,3, Josep M Poblet2.   

Abstract

Accurate quantum chemical calculations on real-world magnetic systems are challenging, the inclusion of electron correlation being the bottleneck of such task. One method proposed to overcome this difficulty is the embedded fragment approach. It tackles a chemical problem by dividing it into small fragments, which are treated in a highly accurate way, surrounded by an embedding included at an approximate level. For the vast family of medium-to-large sized polyoxometalates, two-electron-reduced systems are habitual and their magnetic properties are interesting. In this paper, we aim at assessing the quality of embedded fragment calculations by checking their ability to reproduce the electronic spectra of a complete system, here the mixed-metal series [MoxW6-xO19](4-) (x = 0-6). The microscopic parameters extracted from fragment calculations (electron hopping, intersite electrostatic repulsion, local orbital energy, etc.) have been used to reproduce the spectra through model Hamiltonian calculations. These energies are compared to the results of the highly accurate ab initio difference dedicated configuration interaction (DDCI) method on the complete system. In general, the model Hamiltonian calculations using parameters extracted from embedded fragments nearly exactly reproduce the DDCI spectra. This is quite an important result since it can be generalized to any inorganic magnetic system. Finally, the occurrence of singlet or triplet ground states in the series of molecules studied is rationalized upon the interplay of the parameters extracted.

Entities:  

Year:  2015        PMID: 26580912     DOI: 10.1021/ct5010005

Source DB:  PubMed          Journal:  J Chem Theory Comput        ISSN: 1549-9618            Impact factor:   6.006


  2 in total

1.  Effective Storage of Electrons in Water by the Formation of Highly Reduced Polyoxometalate Clusters.

Authors:  Jia-Jia Chen; Laia Vilà-Nadal; Albert Solé-Daura; Greig Chisholm; Takuo Minato; Christoph Busche; Tingting Zhao; Balamurugan Kandasamy; Alexey Y Ganin; Rachelle M Smith; Ian Colliard; Jorge J Carbó; Josep M Poblet; May Nyman; Leroy Cronin
Journal:  J Am Chem Soc       Date:  2022-05-10       Impact factor: 16.383

2.  When Identification of the Reduction Sites in Mixed Molybdenum/Tungsten Keggin-Type Polyoxometalate Hybrids Turns Out Tricky.

Authors:  Maxime Laurans; Michele Mattera; Raphaël Salles; Ludivine K'Bidi; Pierre Gouzerh; Séverine Renaudineau; Florence Volatron; Geoffroy Guillemot; Sébastien Blanchard; Guillaume Izzet; Albert Solé-Daura; Josep M Poblet; Anna Proust
Journal:  Inorg Chem       Date:  2022-05-12       Impact factor: 5.436

  2 in total

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