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Colossal barocaloric effects near room temperature in plastic crystals of neopentylglycol

机译:新戊二醇塑料晶体在室温附近的巨大压力效应

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摘要

There is currently great interest in replacing the harmful volatile hydrofluorocarbon fluids used in refrigeration and air-conditioning with solid materials that display magnetocaloric, electrocaloric or mechanocaloric effects. However, the field-driven thermal changes in all of these caloric materials fall short with respect to their fluid counterparts. Here we show that plastic crystals of neopentylglycol (CH3)2C(CH2OH)2 display extremely large pressure-driven thermal changes near room temperature due to molecular reconfiguration, that these changes outperform those observed in any type of caloric material, and that these changes are comparable with those exploited commercially in hydrofluorocarbons. Our discovery of colossal barocaloric effects in a plastic crystal should bring barocaloric materials to the forefront of research and development in order to achieve safe environmentally friendly cooling without compromising performance.
机译:当前,人们非常感兴趣的是用具有磁热,电热或机械热作用的固体材料代替制冷和空调中使用的有害挥发性氢氟烃流体。然而,所有这些热量材料中的场驱动热变化相对于它们的流体对应物都不足。在这里我们显示,由于分子重构,新戊二醇(CH3)2C(CH2OH)2的塑料晶体在室温附近显示出极大的压力驱动热变化,这些变化优于任何类型的热材料中观察到的变化,并且这些变化是可与在氢氟碳化合物中进行商业开发的产品相比。我们在塑料晶体中发现巨大的压力效应,应该将压力材料带到研究和开发的最前沿,以便在不影响性能的情况下实现安全的环境冷却。

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