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September 23, 2025The Journal of Physical Chemistry A8 citationsOpen Access

Density Functional Theory for Molecular and Periodic Systems in TURBOMOLE: Theory, Implementation, and Applications

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MSManas SharmaYFYannick J. FranzkeCHChristof Holzer

Key Points

  • Density functional theory provides critical insights into molecular and periodic systems using TURBOMOLE, showcasing its practical applications.
  • The approach utilizes Gaussian-type orbitals and real-space techniques, enhancing computational efficiency in modeling systems.
  • Recent advancements include addressing relativistic effects and developing a web-based interface for user-friendly input and output analysis.
  • This work consolidates theoretical foundations and practical applications, serving as a reference for quantum chemical studies.

Abstract

This work provides a detailed overview of density functional theory (DFT) methods for treating molecular and periodic systems within the TURBOMOLE software package. The implementation employs Gaussian-type orbitals and is based on efficient real-space techniques and density-fitting approaches for Coulomb interactions. Recent developments are reviewed, including the treatment of relativistic effects with effective core potentials, the incorporation of spin–orbit coupling via two-component formalisms, and the extension to real-time time-dependent DFT (RT-TDDFT). Embedding schemes based on frozen-density and projection-based approaches are also discussed, enabling the combination of DFT with high-level correlated wave function methods and many-body perturbation theory for selected subsystems. Representative applications demonstrate the capabilities across bulk materials, surfaces, low-dimensional nanostructures, and adsorption processes. Additionally, a web-based graphical interface has been developed to support input generation, structure manipulation, and output analysis. By consolidating theoretical foundations, implementation strategies, and application examples, this work provides a reference for the use of periodic DFT methods in quantum chemical and materials science studies.

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Cite This Study

Sharma et al. (2025) studied this question.

synapsesocial.com/papers/68d4757f31b076d99fa6d048https://doi.org/10.1021/acs.jpca.5c02937
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