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Hybrid functionals based on a screened Coulomb potential

Jochen Heyd; Gustavo E. Scuseria; Matthias Ernzerhof · The Journal of Chemical Physics · 2003

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Hybrid density functionals are very successful in describing a wide range of molecular properties accurately. In large molecules and solids, however, calculating the exact (Hartree–Fock) exchange is computationally expensive, especially for systems with metallic characteristics. In the present work, we develop a new hybrid density functional based on a screened Coulomb potential for the exchange interaction which circumvents this bottleneck. The results obtained for structural and thermodynamic properties of molecules are comparable in quality to the most widely used hybrid functionals. In addition, we present results of periodic boundary condition calculations for both semiconducting and metallic single wall carbon nanotubes. Using a screened Coulomb potential for Hartree–Fock exchange enables fast and accurate hybrid calculations, even of usually difficult metallic systems. The high accuracy of the new screened Coulomb potential hybrid, combined with its computational advantages, makes it widely applicable to large molecules and periodic systems.

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APA 7

Heyd, J, Scuseria, G. E, & Ernzerhof, M. (2003). Hybrid functionals based on a screened Coulomb potential. https://doi.org/10.1063/1.1564060

MLA

Heyd, Jochen, et al. "Hybrid functionals based on a screened Coulomb potential." 2003. https://doi.org/10.1063/1.1564060.

Chicago

Heyd, Jochen, Gustavo E. Scuseria, and Matthias Ernzerhof. 2003. "Hybrid functionals based on a screened Coulomb potential.". https://doi.org/10.1063/1.1564060.

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Heyd, J, Scuseria, G. E. and Ernzerhof, M. 2003, Hybrid functionals based on a screened Coulomb potential, The Journal of Chemical Physics, available at: https://doi.org/10.1063/1.1564060 [Accessed 7 Aug. 2026].

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Title
Hybrid functionals based on a screened Coulomb potential
Author / contributors
Jochen Heyd; Gustavo E. Scuseria; Matthias Ernzerhof
Publisher
The Journal of Chemical Physics
Publication year
2003
Language
English

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