Department of Chemistry and Biochemistry, The Ohio State University, 100 West 18th Avenue, Columbus, Ohio 43210, United States.
Department of Physics and Astronomy, California State University, Northridge, California 91330, United States.
Inorg Chem. 2021 Oct 4;60(19):14679-14686. doi: 10.1021/acs.inorgchem.1c01752. Epub 2021 Sep 23.
Developing low-melting alkali salts is of interest for both battery electrolytes and inorganic ionic liquids. In this study, we report a series of asymmetric alkali-metal sulfonamide salts based upon the (3-methoxypropyl)((trifluoromethyl)sulfonyl)amide (MPSA) anion. This family of salts features an unusual melting point trend, where the melting point of the salts decreases as the cation increases in size from Li to K but then the melting point as the cation further increases in size from K to Cs. Analyses of single crystals reveal that the unusual higher melting points of RbMPSA and CsMPSA in comparison to KMPSA can be attributed to the greater cation-cation distances as well as the increased rigidity of anion-cation coordination due to an increase in cyclic structures in comparison to KMPSA. Exceptionally, KMPSA features a very low melting point of only 50.79 ± 0.31 °C. This low melting point can be attributed to a relatively high degree of disorder, an unusual uncoordinated ether moiety, and a very short K-K distance of only 3.4348(7) Å among other factors, which is supported by the low cohesive energy and small elastic moduli among the rest according to density functional theory (DFT) calculations. The low melting point of KMPSA makes it interesting for low-temperature ionic liquids.
开发低熔点碱金属盐对于电池电解质和无机离子液体都很有意义。在这项研究中,我们报告了一系列基于(3-甲氧基丙基)((三氟甲基)磺酰)酰胺(MPSA)阴离子的不对称碱金属磺酰胺盐。这一系列盐具有不寻常的熔点趋势,其中盐的熔点随着阳离子从 Li 增加到 K 而降低,但随着阳离子从 K 进一步增加到 Cs 而升高。单晶分析表明,与 KMPSA 相比,RbMPSA 和 CsMPSA 的较高熔点可归因于较大的阳离子-阳离子距离以及由于与 KMPSA 相比增加了环状结构而导致的阴离子-阳离子配位的刚性增加。特别的是,KMPSA 的熔点非常低,仅为 50.79 ± 0.31°C。这种低熔点可归因于相对较高的无序度、不寻常的未配位的醚部分以及仅 3.4348(7)Å 的非常短的 K-K 距离等因素,根据密度泛函理论(DFT)计算,这也得到了其余部分的低内聚能和小弹性模量的支持。KMPSA 的低熔点使其成为低温离子液体的有趣选择。