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Discovery of Spin-Crossover Materials with Equivariant Graph Neural Networks and Relevance-Based Classification
Angel Albavera-Mata1,2, Pawan Prakash1,2, Jason B Gibson3,4
1Department of Physics, University of Florida, Gainesville, Florida 32611, United States.
Abstract:
Swift discovery of spin-crossover materials for their potential application in electronic and quantum devices requires techniques that enable efficient identification of suitable candidates. To this end, we screened the Cambridge Structural Database to develop a specialized database of 1439 materials and computed spin-switching energies from density functional theory for each material. The database was used to train an equivariant graph convolution neural network to predict the magnitude of the spin-conversion energy. A test mean absolute error was 360 meV. For candidate identification, we equipped the system with a relevance-based classifier. This approach leads to a nearly 4-fold improvement in identifying potential spin-crossover systems of interest as compared to conventional high-throughput screening.
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