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Recipes for enhanced molecular cooling
Dalton Transactions · 2010 · Vol. 39(20) · pp. 4672–4672
Marco Evangelisti✉(Universidad de Zaragoza)Euan K. Brechin(University of Edinburgh)
Abstract
Molecular nanomagnets are considered valid candidates for magnetic refrigeration at low temperatures. Designing these materials for enhanced cooling requires the control and optimization of the quantum properties at the molecular level, in particular: spin ground state, magnetic anisotropy, and presence of low-lying excited spin states. Herein, we present the theoretical framework together with a critical review of recent results, and perspectives for future developments.
Magnetic and transport properties of perovskites and related materialsMagnetism in coordination complexesAdvanced Condensed Matter PhysicsMagnetic refrigerationMolecular magnetsExcited stateNanomagnetGround stateAnisotropySpin (aerodynamics)Spin statesMaterials scienceCondensed matter physics
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References
Magnetocaloric effect and magnetic refrigeration
Journal of Magnetism and Magnetic Materials · 1999 · 1,578 citations
Introduction to Solid State Physics
American Journal of Physics · 1957 · 22,357 citations
Magnetocaloric effect in superparamagnets
Journal of Magnetism and Magnetic Materials · 1992 · 502 citations
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