具有浓缩酶固定化层的微电极的行为

M. Hashimoto, N. Sakamoto, S. Upadhyay, H. Suzuki
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引用次数: 0

摘要

研究了具有高浓度酶固定化层的电极的行为。酶固定化层是通过将酶溶液滴在被超疏水层包围的工作电极上并通过蒸发使其收缩而形成的。与传统方法制造的电极相比,观察到输出电流的显著增加。电流密度随着电极尺寸的减小和酶载量的增加而增大。用这种方法制成的传感器被集成在微流道中。电极越小,电流密度越大,转换效率越高,对电流的依赖性越弱。通过在流道中放置两个相同的电极,也可以提高灵敏度和转换效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Behavior of a Microelectrode with a Concentrated Enzyme-Immobilized Layer
The behavior of electrodes with a highly concentrated enzyme-immobilized layer was examined. The enzyme-immobilized layer was formed by placing a droplet of an enzyme solution on the working electrode surrounded by a super-hydrophobic layer and shrinking it by evaporation. A significant increase in the output current was observed compared electrodes fabricated by a conventional method. The current density increased by decreasing the electrode size and increasing enzyme loading. The sensor fabricated by this method was incorporated in a micro-flow channel. With smaller electrodes, the current density and the conversion efficiency increased and the flow dependence became weaker. The sensitivity and the conversion efficiency could also be improved by placing two same electrodes in the flow channel.
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