Department of Chemistry, Graduate School of Science, Kobe University, Rokkodai, Nada, Hyogo 657-8501, Japan.
Dalton Trans. 2013 Jun 21;42(23):8317-27. doi: 10.1039/c3dt00084b. Epub 2013 Apr 22.
Alkyloctamethylferrocenium salts with the Tf2N anion ([Fe(C5Me4C(n)H(2n+1))(C5Me4H)][Tf2N]; Tf2N = bis(trifluoromethanesulfonyl)amide) were prepared, and their ionic liquid properties, thermal properties, crystal structures, and magnetic properties were investigated. The melting points of the Tf2N salts were near room temperature, and decreased with increasing alkyl chain length up to n = 8 and then increased. The salts with PF6 and NO3 anions were also prepared. The melting points of the PF6 salts were higher than 100 °C. Most of these salts exhibited phase transitions in the solid state. The sum of the entropies of the melting and solid phase transitions was nearly independent of the alkyl chain length for salts with short alkyl chains, whereas those for salts with longer alkyl chains (n≥ 10 for Tf2N salts, n≥ 6 for PF6 salts) increased with increasing alkyl chain length. Crystal structure determinations revealed that the short chain salts form simple alternately packed structures of cations and anions in the solid state, and that the long chain salts form lamellar structures, in which the alkyl chains are aligned parallel between the layers. The effects of magnetic fields on the crystallization of the paramagnetic ionic liquids were investigated, and revealed that the Tf2N salts with n = 4 exhibited magnetic orientation when solidified under magnetic fields. The magnetic orientation was shown to be a bulk phenomenon, and the importance of the magnetic anisotropy of the crystal structure was suggested in comparison with the response of other Tf2N salts.
Alkyloctamethylferrocenium 盐与 Tf2N 阴离子([Fe(C5Me4C(n)H(2n+1))(C5Me4H)][Tf2N];Tf2N = 双(三氟甲烷磺酰基)酰胺)一起被制备,并研究了它们的离子液体性质、热性质、晶体结构和磁性质。Tf2N 盐的熔点接近室温,随着烷基链长度的增加(n = 8 及以上)而降低。还制备了具有 PF6 和 NO3 阴离子的盐。PF6 盐的熔点高于 100°C。这些盐中的大多数在固态中都表现出相转变。对于具有短烷基链的盐,熔融和固态相变的熵之和几乎与烷基链长度无关,而对于具有较长烷基链的盐(n≥10 的 Tf2N 盐,n≥6 的 PF6 盐),熵之和随烷基链长度的增加而增加。晶体结构测定表明,短链盐在固态中形成阳离子和阴离子的简单交替堆积结构,而长链盐形成层状结构,其中烷基链在层之间平行排列。研究了磁场对顺磁性离子液体结晶的影响,结果表明,n = 4 的 Tf2N 盐在磁场下固化时表现出磁取向。磁取向被证明是一种体相现象,与其他 Tf2N 盐的响应相比,建议晶体结构的磁各向异性的重要性。