Colossal and fully reversible barocaloric effect for sustainable cooling in a pressure-sensitive spin-crossover complex
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Le résumé fourni par la source
Barocaloric refrigeration has great potential to replace traditional vapor-compression systems, which are conspicuously harmful to the environment. Investigating barocaloric effect driven by a practical pressure remains challenging. Here, we report that the spin-crossover (SCO) complex Fe(PC4HH)2 (PC4HH = 4-hydroxy-N′-((pyridin-2-yl)-methylene)-benzohydrazide) exhibits a colossal and reversible barocaloric entropy change (ΔSr, up to ~125 J·K−1·kg−1) under a small pressure ∼7.5 MPa owing to the extremely high pressure sensitivity of transition temperature (dTc/dP, 5.56 K/MPa). Synchrotron radiation PXRD demonstrate that the source of the enhanced ΔSr and the ultra-large dTc/dP come from the gas (air) adsorption of pressure transimitting medium. The superior pressure sensitivity and outstanding barocaloric performance provide a feasible way to exploit novel barocaloric materials by utilizing the complexation properties of SCO materials with gas. Barocaloric refrigeration has great potential to replace traditional vapor-compression systems, which are conspicuously harmful to the environment. Here, the authors report that pressure-induced spin-crossover transitions in an iron complex can produce a colossal and reversible barocaloric entropy change under a small pressure.
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Le contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.
- Titre Crossref
- Colossal and fully reversible barocaloric effect for sustainable cooling in a pressure-sensitive spin-crossover complex
- Date Crossref
- 15/09/2026
- Éditeur
- Springer Science and Business Media LLC
- Type
- journal-article
Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.
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