Encyclopedia of Inorganic and Bioinorganic Chemistry 2004
DOI: 10.1002/9781119951438.eibc2159
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Inorganic Spintronic Materials

Abstract: Utilization of the spin degree of freedom in metallic, semiconducting, and insulating materials is an active pursuit for spin‐based devices. Besides some existing devices, many new ones have been proposed on the basis of spin‐dependent transport. For these devices to become reality, new materials and methods for efficient injection, manipulation, and detection of electron spins are required. In this article, we present an overview of the research progress in inorganic spintronic materials, with emphasis on the… Show more

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“…The relative ion size requirements for stability of the cubic structure are quite stringent, so slight buckling and distortion can produce several lower-symmetry distorted versions, in which the coordination numbers of cations are reduced. [77] But in fact, almost all perovskite alkaline earth and transition metal tantalates have compound perovskite structures covering two different cations at Ta site in TaO 6 octahedra or at cation site in 12-fold cuboctahedral coordination. This led to the chance of alternatives between ordered and disordered.…”
Section: Crystal Structure Engineeringmentioning
confidence: 99%
“…The relative ion size requirements for stability of the cubic structure are quite stringent, so slight buckling and distortion can produce several lower-symmetry distorted versions, in which the coordination numbers of cations are reduced. [77] But in fact, almost all perovskite alkaline earth and transition metal tantalates have compound perovskite structures covering two different cations at Ta site in TaO 6 octahedra or at cation site in 12-fold cuboctahedral coordination. This led to the chance of alternatives between ordered and disordered.…”
Section: Crystal Structure Engineeringmentioning
confidence: 99%