磁制冷
材料科学
静水压力
电热效应
凝聚态物理
铁电性
相变
环境压力
相(物质)
磁场
热力学
电介质
光电子学
化学
物理
磁化
量子力学
有机化学
作者
Pol Lloveras,Enric Stern‐Taulats,Marı́a Barrio,J. Ll. Tamarit,Sam Crossley,Wei Li,Vladimir Pomjakushin,Antoni Planes,Lluı́s Mañosa,N. D. Mathur,Xavier Moya
摘要
Abstract Caloric effects are currently under intense study due to the prospect of environment-friendly cooling applications. Most of the research is centred on large magnetocaloric effects and large electrocaloric effects, but the former require large magnetic fields that are challenging to generate economically and the latter require large electric fields that can only be applied without breakdown in thin samples. Here we use small changes in hydrostatic pressure to drive giant inverse barocaloric effects near the ferrielectric phase transition in ammonium sulphate. We find barocaloric effects and strengths that exceed those previously observed near magnetostructural phase transitions in magnetic materials. Our findings should therefore inspire the discovery of giant barocaloric effects in a wide range of unexplored ferroelectric materials, ultimately leading to barocaloric cooling devices.
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