Instituto de Microelectronica de Barcelona, Centro Nacional de Microelectronica (CSIC), Campus UAB, 08193 Bellaterra, Barcelona, Spain.
Talanta. 2013 Mar 15;106:286-92. doi: 10.1016/j.talanta.2012.10.083. Epub 2012 Nov 10.
A new impedimetric sensor based on an interdigitated electrode array with electrode digits located at the bottom of microcapillaries formed in silicon dioxide is presented. Microcapillaries are opened at the top, so that in contact with an electrolyte solution the ac current flows close to the surface of the capillary wall from one electrode to another and is significantly affected by changes in the surface conductance at the SiO2/electrolyte interface. Adsorption of detergents on the sensor surface affects the charge distribution in the electrical double layer and thus the surface conductance. These changes are registered by measuring impedance. Effect of surface adsorption of ionic and non-ionic surfactants on the sensor impedance is studied. The sensor is shown to be able to measure commercial detergents residues in a tap water starting from 5 ppm even in solutions with high electrolyte conductivity.
提出了一种基于带有位于二氧化硅中微毛细管底部的电极数字的叉指电极阵列的新型阻抗传感器。微毛细管在顶部打开,因此在与电解质溶液接触时,交流电流从一个电极流到另一个电极,靠近毛细管壁的表面,并且受到 SiO2/电解质界面处表面电导率变化的显著影响。传感器表面上的清洁剂吸附会影响双电层中的电荷分布,从而影响表面电导率。通过测量阻抗来记录这些变化。研究了离子型和非离子型表面活性剂在传感器阻抗上的表面吸附的影响。该传感器能够在高电解质电导率的溶液中,从 5ppm 开始测量自来水中的商用清洁剂残留。