首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Integration of Microfabricated needle-type glucose sensor devices with a novel thin-film Ag/AgCl electrode and plasma-polymerized thin film: mass production techniques
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Integration of Microfabricated needle-type glucose sensor devices with a novel thin-film Ag/AgCl electrode and plasma-polymerized thin film: mass production techniques

机译:微型针型葡萄糖传感器装置与新型薄膜Ag / AgCl电极和等离子聚合薄膜的集成:批量生产技术

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摘要

We developed an integrated array of needle-type biosensors employing a novel proc~ss of fabrication, comprising conventional semiconductor fabrication and micromachining technology. Amperometric sensing electrodes with plasma-polymerized films and a thin-film Ag/AgClreference electrode were directly integrated on a glass substrate with thin-film process, e.g., sputtering. An enzyme was immobilized on the electrode via the plasma-polymerized film, which was deposited directly on the substrate using a dry process. The novel thin-film Ag/AgCl reference electrode showed stable potentials in concentrated chloride solutions for a long period. The plasma-polymerized film is considered to play an important role as an interfacial design between the sensing electrode and the immobilized enzyme considering that the film is extremely thin, adheres well to the substrate (electrode) and has a highly cross-linked network structure and functional groups, such as amino groups. The results showed increments of the sensor signal, probably because the plasma-polymerized film allowed a large amount of enzyme to be immobilized. The greatest advantage is that the process can permit the mass production of high-quality biosensors at a low cost.
机译:我们开发了一种采用新型制造工艺的针型生物传感器集成阵列,包括传统的半导体制造和微加工技术。具有等离子体聚合膜的安培传感电极和薄膜Ag / AgCl参比电极通过薄膜工艺(例如溅射)直接集成在玻璃基板上。通过等离子聚合膜将酶固定在电极上,该膜使用干法直接沉积在基板上。新型薄膜Ag / AgCl参比电极在浓氯化物溶液中长期显示出稳定的电位。考虑到等离子体聚合膜极薄,与基材(电极)的粘附性好,交联性高,网络结构好,因此在传感电极与固定化酶之间的界面设计中起着重要作用。官能团,例如氨基。结果表明传感器信号的增加,可能是因为等离子聚合膜使大量酶固定化了。最大的优点是该方法可以低成本大量生产高质量的生物传感器。

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