Thermodynamic Evaluation of Novel 1,2,4-Triazolium Alanine Ionic Liquids as Sustainable Heat-Transfer Media
Ionic liquids, which are widely recognized as environmentally friendly solvents, stand out as promising alternatives to traditional heat-transfer fluids due to their outstanding heat-storage and heat-transfer capabilities. In the course of our ongoing research, we successfully synthesized ionic liqu...
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Veröffentlicht in: | Molecules (Basel, Switzerland) Switzerland), 2024-11, Vol.29 (22), p.5227 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Ionic liquids, which are widely recognized as environmentally friendly solvents, stand out as promising alternatives to traditional heat-transfer fluids due to their outstanding heat-storage and heat-transfer capabilities. In the course of our ongoing research, we successfully synthesized ionic liquids 1-ethyl-4-alkyl-1,2,4-triazolium alanine [Taz(2,
)][Ala], where (
= 4, 5); in this study, we present comprehensive data on their density, surface tension, isobaric molar heat capacity, and thermal conductivity for the first time. The key thermophysical parameters influencing the heat-transfer process, such as thermal expansibility, compressibility, isochoric heat capacity, and heat-storage density, were meticulously calculated from experimental data. Upon comparison with previously reported ionic liquids and commercially utilized heat-transfer fluids, [Taz(2,
)][Ala] demonstrated superior heat-storage and heat-transfer performance, particularly in terms of heat-storage density (~2.63 MJ·m
·K
), thermal conductivity (~0.190 W·m
·K
), and melting temperature (~226 K). Additionally, the presence of the alanine anion in [Taz(2,
)][Ala] provides more possibilities for its functional application. |
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ISSN: | 1420-3049 1420-3049 |
DOI: | 10.3390/molecules29225227 |