LAUSR.org creates dashboard-style pages of related content for over 1.5 million academic articles. Sign Up to like articles & get recommendations!

Influence of crystalline polymorphism on the phase change properties of sorbitol-Au nanocomposites

Abstract Phase change materials (PCMs) are widely purported in energy storage applications for reducing heating and cooling loads near the transition between solid and liquid phases. Recently, PCMs have gained… Click to show full abstract

Abstract Phase change materials (PCMs) are widely purported in energy storage applications for reducing heating and cooling loads near the transition between solid and liquid phases. Recently, PCMs have gained interest for applications in passive cooling of electronic devices, which can alleviate temperature spikes that reduce the reliable lifetime of the electronics. In this application, sugar alcohols are gaining attention for use in power electronic systems because of their relatively high latent heat and suitable melting temperatures. In this study, the impact of gold nanoparticles on the thermal properties of D-sorbitol (a common sugar alcohol) are reported. Particular attention is paid to the crystallization process and impact on the formation of different crystal phases, since the crystallization process of sugar alcohols can be complicated with concomitant polymorphic crystallization of competing phases within the solid mixture. Here, it was observed that the addition of the nanoparticle in amount up to 0.002 wt% is found to create a minor increase (less than 7%) in the thermal conductivity of the sorbitol, a small decrease in the specific heat, and a significant increase in the latent heat of the sorbitol, up to 2× some cases. This increase is found to be highly dependent on the preferential phase formation of the sorbitol as influenced by the presence of Au nanoparticles.

Keywords: influence crystalline; phase change; crystalline polymorphism; phase; properties sorbitol

Journal Title: Materials Today Energy
Year Published: 2019

Link to full text (if available)


Share on Social Media:                               Sign Up to like & get
recommendations!

Related content

More Information              News              Social Media              Video              Recommended



                Click one of the above tabs to view related content.