Jin Fan, Li Junfang, Ye Xiaodong, Wu Chi
Department of Chemistry, The Chinese University of Hong Kong, Shatin, NT, Hong Kong.
J Phys Chem B. 2007 Oct 11;111(40):11745-9. doi: 10.1021/jp074260f. Epub 2007 Sep 19.
Formation of stable nanobubbles in aqueous solutions of water-soluble organic molecules is a spontaneous process. Using a combination of laser light scattering (LLS) and zeta-potential measurements, we investigated the effects of salt concentration and pH on their stability in alpha-cyclodextrin (alpha-CD) aqueous solutions. Our results reveal that the nanobubbles are unstable in solution with a higher ionic strength, just like colloidal particles in an aqueous dispersion, but become more stable in alkaline solutions. The zeta-potential measurement shows that the nanobubbles are negatively charged with an electric double layer, presumably due to adsorption of negative OH- ions at the gas/water interface. It is this double layer that plays a critical dual role in the formation of stable nanobubbles in aqueous solutions of water-soluble organic molecules, namely, it not only provides a repulsive force to prevent interbubble aggregation and coalescence but also reduces the surface tension at the gas/water interface to decrease the internal pressure inside each bubble.
在水溶性有机分子的水溶液中形成稳定的纳米气泡是一个自发过程。我们结合激光散射(LLS)和zeta电位测量,研究了盐浓度和pH值对其在α-环糊精(α-CD)水溶液中稳定性的影响。我们的结果表明,纳米气泡在离子强度较高的溶液中不稳定,就像水分散体中的胶体颗粒一样,但在碱性溶液中变得更稳定。zeta电位测量表明,纳米气泡带有双电层负电荷,这可能是由于气体/水界面处OH-负离子的吸附。正是这个双电层在水溶性有机分子的水溶液中稳定纳米气泡的形成过程中起着关键的双重作用,即它不仅提供排斥力以防止气泡间的聚集和合并,而且还降低气体/水界面处的表面张力以降低每个气泡内部的压力。