Ishimatsu Ryoichi, Nishi Naoya, Kakiuchi Takashi
Department of Energy and Hydrocarbon Chemistry, Graduate School of Engineering, Kyoto University, Kyoto 615-8510, Japan.
Langmuir. 2007 Jul 3;23(14):7608-11. doi: 10.1021/la700884q. Epub 2007 Jun 7.
The specific interaction of N-tetradecylisoquinolinium (C(14)Iq+) with Cl- and Br- has been detected in the voltammetry of ion transfer and electrocapillarity at the interface between an aqueous solution (W) and a room-temperature ionic liquid (RTIL), N-tetradecylisoquinolinium bis(pentafluoroethylsulfonyl)imide ([C(14)Iq+][C(2)C(2)N-]). This specific interaction also makes the transfer of Cl- and Br- into [C(14)Iq+][C(2)C(2)N-] energetically more favorable in comparison with that of F- and SO(4)(2-). The width of the polarized potential window in ion-transfer voltammetry at the [C(14)Iq+][C(2)C(2)N-]|W interface is significantly narrower because of the transfer of anions from W to RTIL. The degree of affinity of the anion with C(14)Iq+ agrees with the Hofmeister series. Such an ion-pair formation of anions in W with cations in the RTIL is much weaker when the cation constituting the RTIL is a symmetric tetraheptylammonium ion.
在水溶液(W)与室温离子液体(RTIL)N-十四烷基异喹啉双(五氟乙基磺酰基)亚胺([C(14)Iq+][C(2)C(2)N-])界面处的离子转移伏安法和电毛细现象中,已检测到N-十四烷基异喹啉鎓(C(14)Iq+)与Cl-和Br-的特异性相互作用。与F-和SO(4)(2-)相比,这种特异性相互作用也使得Cl-和Br-转移到[C(14)Iq+][C(2)C(2)N-]在能量上更有利。由于阴离子从W转移到RTIL,[C(14)Iq+][C(2)C(2)N-]|W界面处离子转移伏安法中极化电位窗口的宽度明显变窄。阴离子与C(14)Iq+的亲和程度与霍夫迈斯特序列一致。当构成RTIL的阳离子是对称四庚基铵离子时,W中阴离子与RTIL中阳离子的这种离子对形成要弱得多。