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A theoretical study of zero-field splitting in Fe(IV)S<inf>6</inf>(S=1) and Fe(III)S<inf>6</inf>(S=1/2) core complexes, [Fe<sup>IV</sup>(Et<inf>2</inf>dtc)<inf>3-n</inf>(mnt)<inf>n</inf>]<sup>(n-1)-</sup>and [Fe<sup>III</sup>(Et<inf>2</inf>dtc)<inf>3-n</inf>(mnt)<inf>n</inf>]<sup>n-</sup>(n=0, 1, 2, 3): The origin of the magnetic anisotropy

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Mihail Atanasov, Panida Surawatanawong, Karl Wieghardt, Frank Neese A theoretical study of zero-field splitting in Fe(IV)S<inf>6</inf>(S=1) and Fe(III)S<inf>6</inf>(S=1/2) core complexes, [Fe<sup>IV</sup>(Et<inf>2</inf>dtc)<inf>3-n</inf>(mnt)<inf>n</inf>]<sup>(n-1)-</sup>and [Fe<sup>III</sup>(Et<inf>2</inf>dtc)<inf>3-n</inf>(mnt)<inf>n</inf>]<sup>n-</sup>(n=0, 1, 2, 3): The origin of the magnetic anisotropy. Coordination Chemistry Reviews. Vol.257, No.1 (2013), 27-41. doi:10.1016/j.ccr.2012.05.017 Retrieved from: https://repository.li.mahidol.ac.th/handle/20.500.14594/31561

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