Published December 2018 | Version v1
Journal article

Nucleation triggering methods in supercooled phase change materials (PCM), a review

  • 1. Université d'Artois, EA 4515, Laboratoire de Génie Civil et géo-Environnement (LGCgE), F-62400 Béthune (France)
  • 2. Université Grenoble Alpes, CEA Grenoble, CEA/LITEN/DTNM/SA3D/LMCM, 38000 Grenoble (France)

Description

Highlights: • Different solidification methods for PCMs' supercooling suppression were analyzed. • Seeding induced reproducible and controlled heat release from supercooled PCM. • Use of 1 wt% additives is sufficient to induce reproducible heat release for PCMs. • Electrical discharge led to controlled heat release with specific electrodes. • Use of ultrasound induced controlled heat release, favored for low frequencies. Supercooling is an undesired property of phase change materials due to the poorly predictable occurrence of crystallization during cooling. For such situations, the stored latent heat cannot be recovered which can be an issue for temperature-controlled applications. This review illustrates the techniques used for triggering crystallization in phase change materials having a supercooling property. The development of triggering devices should constitute a breakthrough for heat on demand applications, as heat can be released even when the temperature drops far below the liquidus temperature. Several techniques appear to be promising for nucleation triggering. They have been classified into two categories: passive (reduction of supercooling) or active (triggering of crystallization on demand) devices. They were accurately investigated for water freezing for: meteorological comprehension, food preservation or the pharmaceutical industry. In this paper, several nucleating agents (passive) have been explored, and most of them, added by 1 wt%, can decrease the supercooling degree by more than 90%. In addition, the heat would be immediately released on demand from a supercooled material by the use of seeding or electrofreezing (active methods). Solidification can also be externally triggered by the application of high pressure or ultrasonic waves (active). In addition to the analysis of the efficiency of the different techniques in terms of supercooling reduction, this review also discusses the solidification process at a microscopic scale.

Availability note (English)

Available from http://dx.doi.org/10.1016/j.tca.2018.10.009

Additional details

Identifiers

DOI
10.1016/j.tca.2018.10.009;
PII
S0040603118304544;

Publishing Information

Journal Title
Thermochimica Acta
Journal Volume
670
Journal Page Range
p. 184-201
ISSN
0040-6031
CODEN
THACAS

Optional Information

Copyright
Copyright (c) 2018 Elsevier B.V. All rights reserved.