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Table 1: Selected caloric parameters of some of the up-to-date best caloric materials.
Moya, X., Kar-Narayan, S. & Mathur, N. D. Caloric materials near ferroic phase transitions.
Up to now, the most promising caloric materials are those exhibiting giant magnetocaloric effects1,2.
This study may pave the way for designing advanced caloric materials with cyclically stable and reversible large caloric effects and wide refrigeration temperature region for solid-state refrigeration.
Nevertheless, an aspect that had not yet been explored in these hybrid materials is their potentiality as solid-state caloric materials, in view of the stimuli-driven caloric effects they can display.
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It should be indicated that for the same magnitude of applied-stimulus (pressure, magnetic or electric field), a larger RCP indicates a larger refrigerating capacity and thus a better caloric material.
Most remarkably, these large values compare well with those reported for giant magneto-, elasto-caloricto-caloric materials, even if in those cases under the application of much larger fields (see Table 1).
Fähler, S. et al. Caloric effects in ferroic materials: new concepts for cooling.
For measurement of caloric contents, the dried material was turned into powder with a mortar.
This allows one to study previously unexplored components of the actual or net caloric behavior in a ferroelectric material.
On the other hand, materials that display solid-state caloric effects driven by applied pressure/stress could lead to more accessible and economic technological solutions.
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