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Generalized Mulliken-Hush Method

Several approaches are available in the literature to generate and evaluate Hamiltonian matrix elements with wavefunctions of charge-localized, diabatic states. They differ in the level of theory used in the calculation and in the way localized electronic structures are created [15, 25, 26, 29-31]. When wavefunction-based quantum-chemical methods are employed, the framework of the generalized Mulliken-Hush method (GMH) [29, 32-34], is particularly successful. So far, it has been used in conjunction with accurate electronic structure methods for small and medium sized systems [35-37]. As an alternative to GMH and other derived methods [38, 39], additional methods have been explored for their applicability in larger systems such as constrained density functional method (CDFT) [25, 37, 40, 41], and fragmentation approaches [42-47], which also include the frozen density embedding (FDE) method [48, 49]. [Pg.104]


See other pages where Generalized Mulliken-Hush Method is mentioned: [Pg.39]    [Pg.42]    [Pg.44]    [Pg.44]    [Pg.487]    [Pg.121]    [Pg.204]    [Pg.486]    [Pg.487]    [Pg.495]    [Pg.31]   
See also in sourсe #XX -- [ Pg.44 ]




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