Burt David P, Cervera Javier, Mandler Daniel, Macpherson Julie V, Manzanares José A, Unwin Patrick R
Department of Chemistry, University of Warwick, Coventry, UK.
Phys Chem Chem Phys. 2005 Aug 7;7(15):2955-64. doi: 10.1039/b506611e. Epub 2005 Jun 30.
A new method has been developed for measuring local adsorption rates of metal ions at interfaces based on scanning electrochemical microscopy (SECM). The technique is illustrated with the example of Ag+ binding at Langmuir phospholipid monolayers formed at the water/air interface. Specifically, an inverted 25 microm diameter silver disc ultramicroelectrode (UME) was positioned in the subphase of a Langmuir trough, close to a dipalmitoyl phosphatidic acid (DPPA) monolayer, and used to generate Ag+ via Ag electro-oxidation. The method involved measuring the transient current-time response at the UME when the electrode was switched to a potential to electrogenerate Ag+. Since the Ag+/Ag couple is reversible, the response is highly sensitive to local mass transfer of Ag+ away from the electrode, which, in turn, is governed by the interaction of Ag+ with the monolayer. The methodology has been used to determine the influence of surface pressure on the adsorption of Ag+ ions at a phospholipid (dipalmitoyl phosphatidic acid) Langmuir monolayer. It is shown that the capacity for metal ion adsorption at the monolayer increased as the density of surface adsorption sites increased (by increasing the surface pressure). A model for mass transport and adsorption in this geometry has been developed to explain and characterise the adsorption process.
基于扫描电化学显微镜(SECM)开发了一种测量金属离子在界面处局部吸附速率的新方法。以Ag⁺在水/空气界面形成的朗缪尔磷脂单层上的结合为例对该技术进行了说明。具体而言,将一个倒置的直径为25微米的银盘超微电极(UME)放置在朗缪尔槽的亚相中,靠近二棕榈酰磷脂酸(DPPA)单层,并用于通过Ag的电氧化产生Ag⁺。该方法包括在电极切换到产生Ag⁺的电位时测量UME处的瞬态电流-时间响应。由于Ag⁺/Ag电对是可逆的,该响应对Ag⁺从电极处的局部传质高度敏感,而Ag⁺的局部传质又受Ag⁺与单层相互作用的控制。该方法已用于确定表面压力对磷脂(二棕榈酰磷脂酸)朗缪尔单层上Ag⁺离子吸附的影响。结果表明,随着表面吸附位点密度的增加(通过增加表面压力),单层上金属离子的吸附容量增加。已开发出一种用于此几何结构中传质和吸附的模型,以解释和表征吸附过程。