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Nonlocal density functional formalism

Kurita et al. used an MO method based on a nonlocal density functional formalism for the calculation of binding energies of several carbon fullerenes [234]. [Pg.17]

In addition to the cluster calculations, we report details of recent first-principles calculations based on the density functional formalism. These calculations employ periodic boundary conditions to allow investigation of the entire zeolite lattice, and therefore the use of a plane-wave basis set is applicable. This has a number of advantages, most notably that the absence of atom-centered basis functions results in no basis set superposition error (BSSE) (272), which arises as a result of the finite nature of atom-centered basis sets. Nonlocal, or gradient, corrections are applicable also, just as they are in the cluster calculations. [Pg.87]

Zunger A, Cohen M (1979) First-principles nonlocal-pseudopotential approach in the density-functional formalism. II. Application to electronic and stmctural properties of sohds. Phys Rev 820 4082-4108... [Pg.46]

The formalism of nonlocal functional density theory provides an attractive way to describe the physical adsorption process at the fluid - solid interface.65 In particular, the ability to model adsorption in a pore of slit - like or cylindrical geometry has led to useful methods for extracting pore size distribution information from experimental adsorption isotherms. At the moment the model has only been tested for microporous carbons and slit - shaped materials.66,67 It is expected that the model will soon be implemented for silica surfaces. [Pg.55]


See other pages where Nonlocal density functional formalism is mentioned: [Pg.3]    [Pg.237]    [Pg.86]    [Pg.200]    [Pg.88]    [Pg.132]    [Pg.10]    [Pg.691]    [Pg.692]   
See also in sourсe #XX -- [ Pg.17 ]




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