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Understanding colossal barocaloric effects in plastic crystals

机译:了解塑料晶体中的巨大的黑圆身作用

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Plastic crystal neopentylglycol (NPG) exhibits colossal barocaloric effects (BCEs) with record-high entropy changes, offering exciting prospects for the field of solid-state cooling through the application of moderate pressures. Here, we show that the intermolecular hydrogen bond plays a key role in the orientational order of NPG molecules, while its broken due to thermal perturbation prominently weakens the activation barrier of orientational disorder. The analysis of hydrogen bond strength, rotational entropy free energy and entropy changes provides insightful understanding of BCEs in order-disorder transition. External pressure reduce the hydsrogen bond length and enhance the activation barrier of orientational disorder, which serves as a route of varying intermolecular interaction to tune the order-disorder transition. Our work provides atomic-scale insights on the orientational order-disorder transition of NPG as the prototypical plastic crystal with BCEs, which is helpful to achieve superior caloric materials by molecular designing in the near future.
机译:塑性晶体新戊二醇(NPG)表现出巨大的与记录高熵的变化barocaloric效果(个BCE),提供为固态,通过适度的压力的施加冷却的励磁前景。在这里,我们表明,分子间氢键起着NPG分子的取向秩序了关键作用,而其破碎由于热扰动突出削弱取向紊乱的活化能垒。的氢键强度,旋转熵自由能和熵变分析提供了个BCE的见地了解在有序 - 无序转变。外部压力降低hydsrogen键长和提高取向紊乱的活化能垒,其作为变化的分子间相互作用以调谐有序 - 无序转变的路径。我们的工作提供了作为原型塑料晶体个BCE,这是有益的,以实现通过分子设计优良热量材料在不久的将来NPG的取向有序 - 无序转变的原子尺度的见解。

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