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离子液体的电润湿

Electrowetting of ionic liquids.

作者信息

Millefiorini Stefano, Tkaczyk Alan H, Sedev Rossen, Efthimiadis Jim, Ralston John

机构信息

Ian Wark Research Institute, University of South Australia, Mawson Lakes, SA 5095, Australia.

出版信息

J Am Chem Soc. 2006 Mar 8;128(9):3098-101. doi: 10.1021/ja057606d.

Abstract

We have successfully demonstrated that imidazolium- and pyrrolidinium-based commercial room-temperature ionic liquids can electrowet (with a dc voltage) a smooth fluoropolymer (Teflon AF1600) surface. Qualitatively, the process is analogous to the electrowetting of aqueous electrolyte solutions: the contact angle versus voltage curve has a parabolic shape which saturates at larger voltages (positive or negative). On the other hand we observed several peculiarities: (i) the efficiency is significantly lower (by about an order of magnitude); (ii) the influence of the bulky cation is larger and the importance of the smaller anion is lesser, especially with respect to electrowetting saturation; (iii) there is an asymmetry in the saturation contact angles found for positive and negative voltages. The asymmetry may be correlated with the cation-anion asymmetry of the ionic liquids. The low efficiency may be caused by the presence of water and other impurities in these commercial materials.

摘要

我们已成功证明,基于咪唑鎓和吡咯烷鎓的商用室温离子液体能够(通过直流电压)对光滑的含氟聚合物(特氟龙AF1600)表面进行电润湿。定性地说,该过程类似于水性电解质溶液的电润湿:接触角与电压曲线呈抛物线形状,在较高电压(正电压或负电压)下达到饱和。另一方面,我们观察到了几个特殊之处:(i)效率显著较低(约低一个数量级);(ii)体积较大的阳离子的影响更大,而较小的阴离子的重要性较小,特别是在电润湿饱和方面;(iii)正电压和负电压下的饱和接触角存在不对称性。这种不对称性可能与离子液体的阳离子-阴离子不对称性有关。低效率可能是由这些商业材料中存在的水和其他杂质导致的。

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