Aug 2026· Journal of Physical Chemistry Letters· 0 citations· 55 references
Abstract
The potential energy surface of an 8-atom periodic cell of carbon is explored using discrete path sampling with the energy, forces, and stress tensor represented by the MACE-MATPES-r2SCAN-0 potential evaluated via an interface to the Atomic Simulation Environment. The resulting enthalpy landscape is explored as a function of pressure and compared to the experimental phase diagram. Several interesting pathways between different phases are analyzed in detail, including symmetry analysis for degenerate rearrangements of periodic crystals. We also considered the effect of a dispersion correction on the energetics and structure of selected crystals. The approach employed here is generally applicable for materials and condensed phase modeling.
The reaction mechanism of the N atom interaction with a single-layer MoS2, two-dimensional transition metal dichalcogenide, is considered in detail. These mechanisms were studied by DFT (density functional theory) modeling using both static and dynamic approaches. The most important processes for pristine and modified...
E. Voronina, Y. Mankelevich, Lev S. Novikov et al.· Journal of Physics: Condense...· 0 citations
We compute the potential-energy surfaces for molecular ions up to H$_2$O$^{3+}$ with any combinations of outer-valence, inner-valence and core holes. To obtain the potential-energy surfaces, we consider several ab initio techniques based on the CASSCF method and benchmark them with respect to the literature. We thus id...