Landau theory of barocaloric plastic crystals

Author:

Marín-Delgado RORCID,Moya XORCID,Guzmán-Verri G GORCID

Abstract

Abstract We present a minimal Landau theory of plastic-to-crystal phase transitions in which the key components are a multipole-moment order parameter that describes the orientational ordering of the constituent molecules, coupling between such order parameter and elastic strains, and thermal expansion. We illustrate the theory with the simplest non-trivial model in which the orientational ordering is described by a quadrupole moment, and use such model to calculate barocaloric effects in plastic crystals that are driven by hydrostatic pressure. The model captures characteristic features of plastic-to-crystal phase transitions, namely large changes in volume and entropy at the transition, as well as the linear dependence of the transition temperature with pressure. We identify temperature regions in the barocaloric response associated with the individual plastic and crystal phases, and those involving the phase transition. Our model is in overall agreement with previous experiments in powdered samples of fullerite C60, and predicts peak isothermal entropy changes of 90 J K 1 kg 1 and peak adiabatic temperature changes of 35 K under 0.60 GPa at 265 K in fullerite single crystals.

Funder

EPSRC

Vicerrectoría de Investigación, Universidad de Costa Rica

Royal Society

ERC

Publisher

IOP Publishing

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Focus on caloric materials and devices;Journal of Physics: Energy;2024-09-12

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