Theoretical design of molecular nanomagnets for magnetic refrigeration

Garlatti E, Carretta S, Schnack J, Amoretti G, Santini P (2013)
Applied Physics Letters 103(20).

Journal Article | Published | English

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Abstract
Molecular nanomagnets are promising materials for very-low-temperature magnetic refrigeration due to their enhanced magnetocaloric effect. By explicitly considering Carnot refrigeration cycles, we theoretically show that the best molecules for magnetic refrigeration between T similar or equal to 10 K and the sub-Kelvin region are those made of strongly ferromagnetically coupled magnetic ions, contrarily to the established belief. This recipe will provide a strong stimulus for designing new magnetic molecules for cryogenic technologies. (C) 2013 AIP Publishing LLC.
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Garlatti E, Carretta S, Schnack J, Amoretti G, Santini P. Theoretical design of molecular nanomagnets for magnetic refrigeration. Applied Physics Letters. 2013;103(20).
Garlatti, E., Carretta, S., Schnack, J., Amoretti, G., & Santini, P. (2013). Theoretical design of molecular nanomagnets for magnetic refrigeration. Applied Physics Letters, 103(20).
Garlatti, E., Carretta, S., Schnack, J., Amoretti, G., and Santini, P. (2013). Theoretical design of molecular nanomagnets for magnetic refrigeration. Applied Physics Letters 103.
Garlatti, E., et al., 2013. Theoretical design of molecular nanomagnets for magnetic refrigeration. Applied Physics Letters, 103(20).
E. Garlatti, et al., “Theoretical design of molecular nanomagnets for magnetic refrigeration”, Applied Physics Letters, vol. 103, 2013.
Garlatti, E., Carretta, S., Schnack, J., Amoretti, G., Santini, P.: Theoretical design of molecular nanomagnets for magnetic refrigeration. Applied Physics Letters. 103, (2013).
Garlatti, E., Carretta, S., Schnack, Jürgen, Amoretti, G., and Santini, P. “Theoretical design of molecular nanomagnets for magnetic refrigeration”. Applied Physics Letters 103.20 (2013).
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