A colossal barocaloric effect induced by the creation of a high-pressure phase

Z Zhang, X Jiang, T Hattori, X Xu, M Li, C Yu… - Materials …, 2023 - pubs.rsc.org
Z Zhang, X Jiang, T Hattori, X Xu, M Li, C Yu, Z Zhang, D Yu, R Mole, S Yano, J Chen, L He…
Materials Horizons, 2023pubs.rsc.org
As a promising environment-friendly alternative to current vapor-compression refrigeration,
solid-state refrigeration based on the barocaloric effect has been attracting worldwide
attention. Generally, both phases in which a barocaloric effect occurs are present at ambient
pressure. Here, instead, we demonstrate that KPF6 exhibits a colossal barocaloric effect due
to the creation of a high-pressure rhombohedral phase. The phase diagram is constructed
based on pressure-dependent calorimetric, Raman scattering, and neutron diffraction …
As a promising environment-friendly alternative to current vapor-compression refrigeration, solid-state refrigeration based on the barocaloric effect has been attracting worldwide attention. Generally, both phases in which a barocaloric effect occurs are present at ambient pressure. Here, instead, we demonstrate that KPF6 exhibits a colossal barocaloric effect due to the creation of a high-pressure rhombohedral phase. The phase diagram is constructed based on pressure-dependent calorimetric, Raman scattering, and neutron diffraction measurements. The present study is expected to provide an alternative routine to colossal barocaloric effects through the creation of a high-pressure phase.
The Royal Society of Chemistry
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