Soltani Mohammad, Siu Benjamin, Vo Matthew, West Kevin N, Adu Clinton, Mirjafari Arsalan, Davis James H
Department of Chemistry, University of South Alabama, Mobile, Alabama 36688, United States.
Department of Chemical & Biomolecular Engineering, University of South Alabama, Mobile, Alabama 36688, United States.
ACS Appl Eng Mater. 2023 Jan 27;1(1):690-695. doi: 10.1021/acsaenm.2c00229. Epub 2023 Jan 13.
Thermally resistant materials have been sought after for use as lubricants, heat transfer fluids, high temperature structural materials, and other applications where thermal stability is required or desired. Herein, we present a new class of thermally robust ionic liquids containing inexpensive benezenesulfonate anions with profound long-term, high-temperature aerobic stability - i.e., no mass loss in 96 hours at 300 °C in air. A coherent correlation between melting and glass transition temperatures and the location and type of the anions was observed. Our work indicates that these systems can be designed to form thermally stable, low-melting organic salts, providing valuable design insights for engineering of their structure-property-function relationships.
人们一直在寻找耐热材料,用于润滑剂、传热流体、高温结构材料以及其他需要或期望具备热稳定性的应用领域。在此,我们展示了一类新型的热稳定离子液体,其含有廉价的苯磺酸盐阴离子,具有出色的长期高温有氧稳定性——即在300°C空气中96小时无质量损失。观察到熔点和玻璃化转变温度与阴离子的位置和类型之间存在连贯的相关性。我们的工作表明,这些体系可以被设计成形成热稳定的低熔点有机盐,为其结构-性质-功能关系的工程设计提供了有价值的见解。