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DFTB3: Extension of the Self-Consistent-Charge Density-Functional Tight-Binding Method (SCC-DFTB)

Journal of Chemical Theory and Computation · 2011 · Vol. 7(4) · pp. 931–948
Michael GausQiang CuiMarcus Elstner

Abstract

The self-consistent-charge density-functional tight-binding method (SCC-DFTB) is an approximate quantum chemical method derived from density functional theory (DFT) based on a second-order expansion of the DFT total energy around a reference density. In the present study we combine earlier extensions and improve them consistently with, first, an improved Coulomb interaction between atomic partial charges, and second, the complete third-order expansion of the DFT total energy. These modifications lead us to the next generation of the DFTB methodology called DFTB3, which substantially improves the description of charged systems containing elements C, H, N, O, and P, especially regarding hydrogen binding energies and proton affinities. As a result, DFTB3 is particularly applicable to biomolecular systems. Remaining challenges and possible solutions are also briefly discussed.

Advanced Chemical Physics StudiesCrystallography and molecular interactionsFree Radicals and AntioxidantsTight bindingDensity functional theoryAffinitiesCharge (physics)Extension (predicate logic)CoulombComputational chemistryBinding energyOrder (exchange)Partial charge
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