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SURFACE CHARGE DENSITY MEASUREMENTS ON MERCURY ELECTRODES COVERED BY PHOSPHOLIPID MONOLAYERS

机译:磷脂单分子层覆盖的汞电极上的表面电荷密度测量

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摘要

A novel method to measure the surface charge density at a hanging mercury drop electrode (HMDE) coated with a self-assembled phospholipid monolayer mimicking a biological membrane is described. The charge density is obtained by analogical integration of the capacitive current which flows at constant applied potential as a consequence of a slight contraction of the mercury drop. The contraction must be carried out while keeping the neck of the lipid-coated mercury drop in contact with the lipid film spread on the surface of the electrolytic solution. The validity of this procedure is tested by comparison with differential capacity measurements carried out at a lipid-coated HMDE, fully immersed into the solution, under otherwise identical conditions. The potential of this method in the investigation of the properties of self-assembled lipid monolayers, either pure or incorporating lipophilic species, is briefly outlined. The method is applied to the determination of the charge density of tetraphenylphosphonium cations adsorbed in the polar head region of a phosphatidylserine monolayer supported by the HMDE. [References: 27]
机译:描述了一种新的方法来测量悬空的汞滴电极(HMDE)上的表面电荷密度,该电极上涂有模仿生物膜的自组装磷脂单层。电荷密度通过电容电流的模拟积分获得,该电容电流由于汞滴的轻微收缩而在恒定的施加电势下流动。收缩必须在脂质包覆的汞滴的颈部与分散在电解液表面的脂质膜接触的同时进行。通过与在完全相同的条件下完全浸入溶液中的脂质涂覆的HMDE进行的差示容量测试进行比较,来测试此程序的有效性。简要概述了该方法在研究自组装脂质单层(纯净或掺入亲脂性物质)的性能方面的潜力。该方法用于测定吸附在由HMDE支撑的磷脂酰丝氨酸单层的极性头区域中的四苯基phosph阳离子的电荷密度。 [参考:27]

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