Key Laboratory of Colloid & Interface Chemistry of the Education Ministry of China, Shandong University, Jinan 250100, PR China.
Colloids Surf B Biointerfaces. 2011 Feb 1;82(2):432-7. doi: 10.1016/j.colsurfb.2010.09.016. Epub 2010 Sep 25.
It is of great significance to develop an appropriate water-in-ionic liquid (W/IL) microemulsion suitable for the expression of the catalytic activity of a given enzyme. In this paper, the phase diagram of a new AOT/Triton X-100/H(2)O/[Bmim][PF(6)] pseudo ternary system is presented. With the aid of nonionic surfactant Triton X-100, AOT could be dissolved in hydrophobic ionic liquid [Bmim][PF(6)], forming a large single phase microemulsion region. The water-in-[Bmim][PF(6)] (W/IL) microemulsion domain was identified electrochemically by using K(3)Fe(CN)(6) as a probe. The existence of W/IL microemulsions was demonstrated spectrophotometrically by using CoCl(2) as a probe. New evidences from the FTIR spectroscopic study, which was first introduced to the W/IL microemulsion by substituting D(2)O for H(2)O to eliminate the spectral interference, demonstrated that there existed bulk water at larger ω(0) values (ω(0) was defined as the molar ratio of water to the total surfactant) in the W/IL microemulsion, which had remained unclear before. In addition to the inorganic salts, biomacromolecule laccase could be solubilized in the W/IL microemulsion. The laccase hosted in the microemulsion exhibited a catalytic activity and the activity could be regulated by the composition of the interfacial membrane.
开发适用于表达特定酶催化活性的合适水/离子液体 (W/IL) 微乳液具有重要意义。本文介绍了一种新型 AOT/Triton X-100/H2O/[Bmim][PF6]拟三元体系的相图。在非离子表面活性剂 Triton X-100 的辅助下,AOT 可以溶解在疏水性离子液体 [Bmim][PF6] 中,形成一个大的单相微乳液区域。通过使用 K3Fe(CN)6 作为探针,电化学方法鉴定了水/[Bmim][PF6](W/IL)微乳液区。通过使用 CoCl2 作为探针,分光光度法证明了 W/IL 微乳液的存在。首先通过用 D2O 代替 H2O 来消除光谱干扰,将 FTIR 光谱研究引入到 W/IL 微乳液中,提供了新的证据,证明在较大的 ω0 值(ω0 定义为水与总表面活性剂的摩尔比)下,W/IL 微乳液中存在体相水,这在以前是不清楚的。除了无机盐外,生物大分子漆酶也可以溶解在 W/IL 微乳液中。包埋在微乳液中的漆酶表现出催化活性,并且活性可以通过界面膜的组成来调节。