Author:
Wang Amanda,Kingsbury Ryan,McDermott Matthew,Horton Matthew,Jain Anubhav,Ong Shyue Ping,Dwaraknath Shyam,Persson Kristin A.
Abstract
AbstractIn this work, we demonstrate a method to quantify uncertainty in corrections to density functional theory (DFT) energies based on empirical results. Such corrections are commonly used to improve the accuracy of computational enthalpies of formation, phase stability predictions, and other energy-derived properties, for example. We incorporate this method into a new DFT energy correction scheme comprising a mixture of oxidation-state and composition-dependent corrections and show that many chemical systems contain unstable polymorphs that may actually be predicted stable when uncertainty is taken into account. We then illustrate how these uncertainties can be used to estimate the probability that a compound is stable on a compositional phase diagram, thus enabling better-informed assessments of compound stability.
Funder
National Science Foundation Data Infrastructure Building Blocks (DIBBS) Project
Department of Energy, Office of Science, Office of Basic Energy Sciences
Publisher
Springer Science and Business Media LLC
Cited by
77 articles.
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