In materials chemistry, identifying common parameters that can organize magnetic ground states across complex intermetallic compounds remains a central challenge. Researchers have long used chemically tunable parameters to control magnetic properties. One is valence-electron concentration, commonly discussed as the electron-per-atom (e/a) ratio. The e/a ratio has been widely used to classify magnetic ground states in metallic systems such as Heusler alloys and approximant crystals.
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Crystal Spacing Outperforms Electron Count in Predicting Magnetic States of Alloys
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September 30, 2026
1 min read
📰 Phys.org
📋 Key Takeaway
Researchers have discovered that crystal spacing can more accurately predict magnetic states in complex alloys than the traditional electron-per-atom ratio. This advancement in materials chemistry could have implications for various technological applications, including those relevant to Iran's industrial capabilities.
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