ChemistryNature Communications
Extending density functional theory with near chemical accuracy beyond pure water
S. Song, S. Vuckovic, et al.
Discover groundbreaking research by Suhwan Song, Stefan Vuckovic, Youngsam Kim, Hayoung Yu, Eunji Sim, and Kieron Burke that enhances the SCAN approximation for accurate biosimulations of pure water and biomolecular interactions. This innovative HF-r²SCAN-DC4 method captures weak dispersion forces, crucial for understanding noncovalent interactions, improving the reliability of simulations in complex biological environments.
Related Publications
Explore these studies to deepen your understanding
Adjacent work that informs or extends this paper's methodology and findings.
Engineering and Technology
Generative design of stable semiconductor materials using deep learning and density functional theory
E. M. D. Siriwardane, Y. Zhao, et al.
Engineering and Technology
Foldable and washable textile-based OLEDs with a multi-functional near-room-temperature encapsulation layer for smart e-textiles
S. Y. Jeong, H. R. Shim, et al.
Engineering and Technology
New solar energy-storage resource of plasmon-activated water solution with higher chemical potential
C. Yang, S. Yu, et al.
Physics
Completing density functional theory by machine learning hidden messages from molecules
R. Nagai, R. Akashi, et al.

