| Literature DB >> 32053870 |
Rebecca Ravotti1, Oliver Fellmann1, Ludger J Fischer1, Jörg Worlitschek1, Anastasia Stamatiou1.
Abstract
Esters present several advantages when compared to traditional materials used for thermal energy storage, amongst which are better sustainability and greater chemical stability. However, at present, their thermal properties remain mostly unknown or not well documented. In this study, 12 diesters from four dicarboxylic acids (oxalic, succinic, suberic, sebacic) and three alcohols (methanol, 1-pentanol, 1-decanol) have been assessed as bio-based phase change materials for thermal energy storage. All diesters have been synthesized via Fischer esterification to high purities, and their chemical structures, as well as thermal properties, have been fully characterized. The diesters investigated show phase change transitions in a low-mid temperature range between -32 and 46 °C with maximum enthalpies of 172 J/g and show higher degrees of supercooling compared to fatty monoesters. Similarly to other esters classes, some trends correlating the chemical structures to the thermal properties were identified, which would allow for the development of property prediction tools.Entities:
Keywords: LHS; PCM; TES; diesters; energy; esters; latent heat storage; phase change materials; sustainability; thermal energy storage
Year: 2020 PMID: 32053870 DOI: 10.3390/ma13040810
Source DB: PubMed Journal: Materials (Basel) ISSN: 1996-1944 Impact factor: 3.623