Investigating nucleation-driven phase transitions in neopentyl molecular crystals using infrared thermography and polarised light microscopy

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Rendell-Bhatti, Frederic, Hana, Vinzent G., Joba, Csongor, Boldrin, David, MacLaren, Donald A.
Format: Preprint
Published: 2026
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866917403129020416
author Rendell-Bhatti, Frederic
Hana, Vinzent G.
Joba, Csongor
Boldrin, David
MacLaren, Donald A.
author_facet Rendell-Bhatti, Frederic
Hana, Vinzent G.
Joba, Csongor
Boldrin, David
MacLaren, Donald A.
contents Sustainable solid-state refrigerants based on barocaloric materials are often limited by thermal hysteresis associated with supercooling effects. Here, we present imaging methods to investigate and compare thermal behaviour and transition kinetics of the barocaloric molecular crystal neopentyl glycol (NPG) with those of a lightly doped derivative, NPG$_{0.99}$PE$_{0.01}$, which incorporates 1 mol % pentaerythritol (PE). We use temperature-dependent polarised light (PL) microscopy and infrared (IR) thermography to correlate phase transition kinetics and local heat-flow with the bulk thermodynamic response obtained from calorimetry. We show that the doped system exhibits reduced supercooling and thermal hysteresis, attributed to increased microstructural disorder and an increase in the number of nucleation events. These findings provide insight into the design of low-hysteresis barocaloric materials for high-efficiency solid-state cooling applications.
format Preprint
id arxiv_https___arxiv_org_abs_2604_11425
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Investigating nucleation-driven phase transitions in neopentyl molecular crystals using infrared thermography and polarised light microscopy
Rendell-Bhatti, Frederic
Hana, Vinzent G.
Joba, Csongor
Boldrin, David
MacLaren, Donald A.
Materials Science
Applied Physics
Sustainable solid-state refrigerants based on barocaloric materials are often limited by thermal hysteresis associated with supercooling effects. Here, we present imaging methods to investigate and compare thermal behaviour and transition kinetics of the barocaloric molecular crystal neopentyl glycol (NPG) with those of a lightly doped derivative, NPG$_{0.99}$PE$_{0.01}$, which incorporates 1 mol % pentaerythritol (PE). We use temperature-dependent polarised light (PL) microscopy and infrared (IR) thermography to correlate phase transition kinetics and local heat-flow with the bulk thermodynamic response obtained from calorimetry. We show that the doped system exhibits reduced supercooling and thermal hysteresis, attributed to increased microstructural disorder and an increase in the number of nucleation events. These findings provide insight into the design of low-hysteresis barocaloric materials for high-efficiency solid-state cooling applications.
title Investigating nucleation-driven phase transitions in neopentyl molecular crystals using infrared thermography and polarised light microscopy
topic Materials Science
Applied Physics
url https://arxiv.org/abs/2604.11425