Quantifying Free-volume Topology in Atomistic Structures Through a Combination of Voxelization and Graph Theory
James Chapman,
Nir Goldman
Abstract:We introduce a new computational methodology for the identification and characterization of free volume within/around atomistic configurations. This scheme employs a three-stage workflow, by which spheres are iteratively grown inside of voxels, and ultimately converted to planar graphs, which are then characterized via a graph-based order parameter. Our approach is computationally efficient, physically intuitive, and universally transferable to any material system. Validation of our methodology is performed on… Show more
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