Crystal spacing outperforms electron count in predicting magnetic states of complex alloys

Crystal spacing outperforms electron count in predicting magnetic states of complex alloys

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This research highlights that crystal spacing is a more effective parameter than the traditional electron-per-atom ratio for predicting magnetic ground states in complex intermetallic compounds. The finding challenges the long-standing reliance on valence-electron concentration to classify magnetic properties in metallic systems such as Heusler alloys and approximant crystals.

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Originally published by gnews