Magneto-Ionics in Single-Layer Transition Metal Nitrides

Магнетоионика в однополосных нитридах переходных металлов
A. Wagner, Jordi Sort, Julius de Rojas, Alberto Quintana, A. F. Lopeandía, Joaquín Salguero, Fatima Ibrahim, Mairbek Chshiev, Maciej Oskar Liedke, Maik Butterling, Llibertat Abad, J. L. Costa‐Krämer, Enric Menéndez, Eric Hirschmann
2021-06-22

Enhanced coercivityIron nitride filmsMagneto-ionicsSaturation magnetizationTransition metal nitrides
High Resolution Image Download MS PowerPoint Slide Magneto-ionics allows for tunable control of magnetism by voltage-driven transport of ions, traditionally oxygen or lithium and, more recently, hydrogen, fluorine, or nitrogen. Here, magneto-ionic effects in single-layer iron nitride films are demonstrated, and their performance is evaluated at room temperature and compared with previously studied cobalt nitrides. Iron nitrides require increased activation energy and, under high bias, exhibit more modest rates of magneto-ionic motion than cobalt nitrides. Ab initio calculations reveal that, based on the atomic bonding strength, the critical field required to induce nitrogen-ion motion is higher in iron nitrides (≈6.6 V nm –1 ) than in cobalt nitrides (≈5.3 V nm –1 ). Nonetheless, under large bias (i.e., well above the magneto-ionic onset and, thus, when magneto-ionics is fully activated), iron nitride films exhibit enhanced coercivity and larger generated saturation magnetization, surpassing many of the features of cobalt nitrides. The microstructural effects responsible for these enhanced magneto-ionic effects are discussed. These results open up the potential integration of magneto-ionics in existing nitride semiconductor materials in view of advanced memory system architectures.
1
Iron nitride films generate larger saturation magnetization when magneto-ionics is fully activated under large bias.
2
Microstructural effects are identified as responsible for the enhanced magneto-ionic behavior in iron nitride films.
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The enhanced magneto-ionic effects in iron nitrides surpass many features of cobalt nitrides.
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These results indicate potential for integrating magneto-ionics into existing nitride semiconductor materials for advanced memory architectures.
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Under large bias well above magneto-ionic onset, iron nitride films show enhanced coercivity compared to lower-bias states.

Single-layer transition metal nitride films (iron nitride and cobalt nitride films)

Magneto-ionic behavior under large electric bias, specifically enhanced coercivity and increased generated saturation magnetization and the microstructural effects responsible for these enhanced magneto-ionic effects

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2021-06-22
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Authors
A. Wagner
Jordi Sort
Julius de Rojas
Alberto Quintana
A. F. Lopeandía
Joaquín Salguero
Fatima Ibrahim
Mairbek Chshiev
Maciej Oskar Liedke
Maik Butterling
Llibertat Abad
J. L. Costa‐Krämer
Enric Menéndez
Eric Hirschmann
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